Tag Archives: roller bearing wheel

China Hot selling Auto Parts/Ball Bearing/ Auto Wheel Hub Bearing/Taper Roller Bearing/Cylindrical Roller Bearing/Slewing deep groove ball bearing

Product Description

Aluminum Die Casting for Metal Radiator Cover/Aluminum cast/gearbox/precision/high-pressure casting/gravity/metal/steel/zinc alloy die-cast

*We bring complete casting solutions to enhance your products and services with the speed and efficiency demanded in today’s marketplace.
*We can produce both aluminum and zinc die castings, and we offer exceptional technical and operational support to help move your business forward.
We deal with a wide range of products which include:
*Auto Parts
*Process Industries
*Auto Meters Castings
*Consumer Electrical Industries
*Textile Industries
*Electronic Industries

Our advantages:
1. High quality materials, professional production, high-precision equipment. Customized design and processing;
2. Strong and durable, strong strength, large torque and good comprehensive mechanical properties;
3. High rotation efficiency, stable and smooth transmission, long service life, noise reduction and shock absorption;
4. Focus on gear processing for 20 years.
5. Carburizing and quenching of tooth surface, strong wear resistance, reliable operation and high bearing capacity;
6. The tooth surface can be ground, and the precision is higher after grinding.

Workshop:

Inspection machine:

/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

After-sales Service: Yes
Warranty: One Year
Condition: New
Certification: ISO9001
Customized: Non-Customized
Material: Alloy
Customization:
Available

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Customized Request

ball bearing

What are the Materials Typically Used in Manufacturing Ball Bearings and Their Advantages?

Ball bearings are manufactured using a variety of materials, each chosen for its specific properties and advantages in various applications. Here are some commonly used materials in ball bearing manufacturing and their respective benefits:

  • High-Carbon Chrome Steel (AISI 52100):

This is the most common material used for ball bearing manufacturing. It offers excellent hardness, wear resistance, and fatigue strength. High-carbon chrome steel bearings are suitable for a wide range of applications, from industrial machinery to automotive components.

  • Stainless Steel (AISI 440C, AISI 304, AISI 316):

Stainless steel bearings are corrosion-resistant and suitable for applications where moisture, chemicals, or exposure to harsh environments are concerns. AISI 440C offers high hardness and corrosion resistance, while AISI 304 and AISI 316 provide good corrosion resistance and are often used in food and medical industries.

  • Ceramic:

Ceramic bearings use silicon nitride (Si3N4) or zirconia (ZrO2) balls. Ceramic materials offer high stiffness, low density, and excellent resistance to corrosion and heat. Ceramic bearings are commonly used in high-speed and high-temperature applications, such as in aerospace and racing industries.

  • Plastic (Polyamide, PEEK):

Plastic bearings are lightweight and offer good corrosion resistance. Polyamide bearings are commonly used due to their low friction and wear properties. Polyether ether ketone (PEEK) bearings provide high-temperature resistance and are suitable for demanding environments.

  • Bronze:

Bronze bearings are often used in applications where self-lubrication is required. Bronze has good thermal conductivity and wear resistance. Bearings made from bronze are commonly used in machinery requiring frequent starts and stops.

  • Hybrid Bearings:

Hybrid bearings combine steel rings with ceramic balls. These bearings offer a balance between the advantages of both materials, such as improved stiffness and reduced weight. Hybrid bearings are used in applications where high speeds and low friction are essential.

  • Specialty Alloys:

For specific applications, specialty alloys may be used to meet unique requirements. For example, bearings used in extreme temperatures or corrosive environments may be made from materials like titanium or hastelloy.

  • Coated Bearings:

Bearings may also be coated with thin layers of materials like diamond-like carbon (DLC) or other coatings to enhance performance, reduce friction, and improve wear resistance.

The choice of material depends on factors such as application requirements, operating conditions, load, speed, and environmental factors. Selecting the right material is essential for ensuring optimal bearing performance, longevity, and reliability in diverse industries and applications.

ball bearing

How do Miniature Ball Bearings Differ from Standard-sized Ones, and Where are They Commonly Used?

Miniature ball bearings, as the name suggests, are smaller in size compared to standard-sized ball bearings. They have distinct characteristics and are designed to meet the unique requirements of applications that demand compactness, precision, and efficient rotation in confined spaces. Here’s how miniature ball bearings differ from standard-sized ones and where they are commonly used:

  • Size:

The most noticeable difference is their size. Miniature ball bearings typically have outer diameters ranging from a few millimeters to around 30 millimeters, while standard-sized ball bearings have larger dimensions suitable for heavier loads and higher speeds.

  • Load Capacity:

Due to their smaller size, miniature ball bearings have lower load-carrying capacities compared to standard-sized bearings. They are designed for light to moderate loads and are often used in applications where precision and compactness are prioritized over heavy load support.

  • Precision:

Miniature ball bearings are known for their high precision and accuracy. They are manufactured to tighter tolerances, making them suitable for applications requiring precise motion control and low levels of vibration.

  • Speed:

Miniature ball bearings can achieve higher speeds than standard-sized bearings due to their smaller size and lower mass. This makes them ideal for applications involving high-speed rotation.

  • Friction and Efficiency:

Miniature ball bearings generally have lower friction due to their smaller contact area. This contributes to higher efficiency and reduced heat generation in applications that require smooth and efficient motion.

  • Applications:

Miniature ball bearings find applications in various industries and sectors:

  • Electronics and Consumer Devices:

They are used in small motors, computer disk drives, printers, and miniature fans, where space is limited but precise motion is essential.

  • Medical and Dental Equipment:

Miniature bearings are used in medical devices such as surgical instruments, dental handpieces, and diagnostic equipment due to their precision and compactness.

  • Robotics and Automation:

Miniature ball bearings are integral to robotic arms, miniature conveyors, and automation systems, enabling precise movement in confined spaces.

  • Aerospace and Defense:

They are used in applications like UAVs (drones), aerospace actuators, and satellite components where size and weight constraints are critical.

  • Optics and Instrumentation:

Miniature bearings play a role in optical instruments, cameras, and measuring devices, providing smooth rotation and accurate positioning.

Overall, miniature ball bearings are specialized components designed for applications where space, precision, and efficient rotation are paramount. Their compactness and high precision make them crucial in various industries requiring reliable motion control in limited spaces.

ball bearing

What is a Ball Bearing and How does it Function in Various Applications?

A ball bearing is a type of rolling-element bearing that uses balls to reduce friction between moving parts and support radial and axial loads. It consists of an outer ring, an inner ring, a set of balls, and a cage that separates and maintains a consistent spacing between the balls. Here’s how ball bearings function in various applications:

  • Reduction of Friction:

Ball bearings function by replacing sliding friction with rolling friction. The smooth, spherical balls minimize the contact area between the inner and outer rings, resulting in lower friction and reduced heat generation.

  • Radial and Axial Load Support:

Ball bearings are designed to support both radial loads (forces perpendicular to the shaft’s axis) and axial loads (forces parallel to the shaft’s axis). The distribution of balls within the bearing ensures load-carrying capacity in multiple directions.

  • Smooth Rotational Movement:

Ball bearings facilitate smooth and precise rotational movement. The rolling motion of the balls allows for controlled and continuous rotation with minimal resistance.

  • Applications in Machinery:

Ball bearings are used in a wide range of machinery and equipment, including motors, generators, gearboxes, conveyors, and fans. They enable the efficient transfer of motion while reducing wear and energy losses.

  • Automotive Industry:

Ball bearings are extensively used in automobiles for various applications, including wheel hubs, transmission systems, steering mechanisms, and engine components. They provide reliability and durability in challenging automotive environments.

  • Industrial Machinery:

In industrial settings, ball bearings support rotating shafts and ensure the smooth operation of equipment such as pumps, compressors, and machine tools.

  • High-Speed Applications:

Ball bearings are suitable for high-speed applications due to their low friction and ability to accommodate rapid rotation. They are used in applications like electric motors and aerospace components.

  • Precision Instruments:

For precision instruments, such as watches, cameras, and medical devices, ball bearings provide accurate rotational movement and contribute to the overall performance of the instrument.

  • Variety of Sizes and Types:

Ball bearings come in various sizes, configurations, and materials to suit different applications. Different types include deep groove ball bearings, angular contact ball bearings, thrust ball bearings, and more.

In summary, ball bearings are essential components in a wide range of applications where smooth rotation, load support, and reduced friction are critical. Their versatility, reliability, and efficiency make them indispensable in industries spanning from automotive to industrial machinery to precision instruments.

China Hot selling Auto Parts/Ball Bearing/ Auto Wheel Hub Bearing/Taper Roller Bearing/Cylindrical Roller Bearing/Slewing   deep groove ball bearingChina Hot selling Auto Parts/Ball Bearing/ Auto Wheel Hub Bearing/Taper Roller Bearing/Cylindrical Roller Bearing/Slewing   deep groove ball bearing
editor by CX 2024-03-23

China Good quality CZPT CZPT CZPT CZPT Motorcycle Bearing Wheel Bearing Linear Bearing Angular Contact Ball Bearing Taper Roller Bearing Deep Groove Ball Bearing Rulemanes bearing air

Product Description

 

Product Description

 

Applicable Material Chrome Steel/Gcr-15
Greese SRL ,PS2, Alvania R12 ,etc
Quality control Checking is during production process, after surface and before packing
Lead time 10-15 days for sample,15-25 days for bulk order depends on your design
Package Standard package/ Pallet or container/ as per customized specifications
Shipment Express & air freight is preferred / sea freight/ as per customized specifications

Quality Control

1) Incoming quality control  : Checking the raw material after they reach our factory

2) Checking the details before the production line operated 

3) In-process quality control : Have a full inspection and routing inspection during mass production

4) Final quality control : Checking the goods after they are finished

5) Outgoing quality control : Checking the goods after they are finished
 

 

More products

Wheel Bearing Dimensions(mm) Mass Hub Assembly Clutch Bearing Truck Bearng Taper roller bearing Wheel bearing kit Wheel Bearing
d D B C
DAC2552Z NISMO V6 3.7L 3696CC VQ37VHR Z TOURING V6 3.7L 3696CC VQ37VHR 2/SP5 LIBERTY IV  [2  XV  13-/xv  13/ REAR
234 24873-AJ00A    
28473-SC000    
28473-FJ000    
28473-FG000   
VKBA7479
FORESTER (SH)  [2008-]IMPREZA Hatchback (GR, GH, G3)  [2007-2014]LEGACY V (BM)  [2009-]LEGACY V Estate (BR)  [2008-2014]OUTBACK (BR)  [2009-]

Company Profile

Rainbow auto parts focuses on the production and sales of auto parts. Our auto parts have been exported to all over the world and have won praise from customers.

We will strictly check the product production process:

  1. Checking the raw material after they reach our factory
  2. Checking the details before the production line operated                                     
  3. Have a full inspection and routing inspection during mass production
  4. Checking the goods after they are finished

Packaging & Shipping

ORIGINAL PACKING/ NEUTRAL PACKING/ PACKAGING AS CUSTOMER REQUIRE

FAQ

Q: What is the MOQ?
A: It depends on what you are buying. Small MOQ can be acceptable.

Q: Can you customize my products?
A: Yes, we can customize products with your design drawings.

Q: What is your terms of payment?
A: 30% T/T in advance, balance before shipment, or as per discussion.

Q. What is your terms of packing?
A: Generally,we use brown boxes for packing. If you have legally registered patent, we can pack the goods in your branded boxes after getting your authorization letters.

Q. How about your delivery time?
A:  If the product is in stock, the delivery time is 1 week after payment. If there is no stock, the delivery time is 30 days.

Q. Do you test all your goods before delivery?
A:   Yes, we have 100% test before delivery.

Q. What can I do if the item damaged during transportation?
A: Our customer service staffs will help you with any questions or concerns. Under any circumstance, we will pack products well before shipping. So if any damage on products, please take pictures for us. We will figure out a solve way.
 

/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

After-sales Service: Full After Sale Service
Warranty: 30000-50000 Km
Type: Wheel Bearing
Samples:
US$ 50/Set
1 Set(Min.Order)

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Order Sample

Customization:
Available

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Customized Request

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Shipping Cost:

Estimated freight per unit.







about shipping cost and estimated delivery time.
Payment Method:







 

Initial Payment



Full Payment
Currency: US$
Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

ball bearing

What are the Common Signs of Wear or Damage in Ball Bearings that Indicate the Need for Replacement?

Ball bearings are subjected to wear and stress during operation, and over time, they may exhibit signs of damage or deterioration that warrant replacement. Recognizing these signs is crucial to prevent catastrophic failure and ensure safe and reliable operation. Here are the common signs of wear or damage in ball bearings:

  • Unusual Noise:

If you hear unusual grinding, clicking, or rumbling noises coming from the bearing during operation, it may indicate worn-out or damaged components. Unusual noise suggests that the bearing is no longer operating smoothly.

  • Vibration:

Excessive vibration in the machinery can be a sign of bearing wear. Vibrations can result from uneven wear, misalignment, or damaged components within the bearing.

  • Increased Temperature:

Higher operating temperatures than usual may indicate increased friction due to inadequate lubrication, wear, or other issues. Monitoring the bearing’s temperature can help identify potential problems.

  • Irregular Movement:

If you notice irregular movement, jerking, or sticking during rotation, it could be a sign that the bearing is no longer operating smoothly. This may be due to damaged rolling elements or raceways.

  • Reduced Performance:

If the machinery’s performance has decreased, it may be due to a compromised bearing. Reduced efficiency, increased energy consumption, or a decline in overall performance could be indicators of bearing wear.

  • Visible Wear or Damage:

Inspect the bearing for visible signs of wear, such as pitting, scoring, or discoloration on the rolling elements or raceways. Severe wear or damage is a clear indication that the bearing needs replacement.

  • Leakage or Contamination:

If there is evidence of lubricant leakage, contamination, or the presence of foreign particles around the bearing, it suggests that the seal or shield may be compromised, leading to potential damage.

  • Looseness or Excessive Play:

If you can feel excessive play or looseness when manually moving the bearing, it could indicate worn-out components or misalignment.

  • Reduced Lifespan:

If the bearing’s expected lifespan is significantly shorter than usual, it may be due to inadequate lubrication, excessive loads, or improper installation, leading to accelerated wear.

  • Frequent Failures:

If the bearing is consistently failing despite regular maintenance and proper use, it could indicate a chronic issue that requires addressing, such as inadequate lubrication or misalignment.

It’s important to conduct regular inspections, monitor performance, and address any signs of wear or damage promptly. Replacing worn or damaged ball bearings in a timely manner can prevent further damage to machinery, reduce downtime, and ensure safe and efficient operation.

ball bearing

What are the Differences between Deep Groove Ball Bearings and Angular Contact Ball Bearings?

Deep groove ball bearings and angular contact ball bearings are two common types of ball bearings, each designed for specific applications and load conditions. Here are the key differences between these two types of bearings:

  • Design and Geometry:

Deep Groove Ball Bearings:

Deep groove ball bearings have a simple design with a single row of balls that run along deep raceways in both the inner and outer rings. The rings are usually symmetrical and non-separable, resulting in a balanced load distribution.

Angular Contact Ball Bearings:

Angular contact ball bearings have a more complex design with two rows of balls, oriented at an angle to the bearing’s axis. This arrangement allows for the transmission of both radial and axial loads, making them suitable for combined loads and applications requiring high precision.

  • Load Carrying Capacity:

Deep Groove Ball Bearings:

Deep groove ball bearings are primarily designed to carry radial loads. They can handle axial loads in both directions, but their axial load-carrying capacity is generally lower compared to angular contact ball bearings.

Angular Contact Ball Bearings:

Angular contact ball bearings are specifically designed to handle both radial and axial loads. The contact angle between the rows of balls determines the bearings’ axial load-carrying capacity. They can handle higher axial loads and are commonly used in applications with thrust loads.

  • Contact Angle:

Deep Groove Ball Bearings:

Deep groove ball bearings have no defined contact angle, as the balls move in a deep groove along the raceways. They are primarily designed for radial loads.

Angular Contact Ball Bearings:

Angular contact ball bearings have a specified contact angle between the rows of balls. This contact angle allows them to carry both radial and axial loads and is crucial for their ability to handle combined loads.

  • Applications:

Deep Groove Ball Bearings:

Deep groove ball bearings are commonly used in applications that primarily require radial loads, such as electric motors, pumps, and conveyor systems. They are also suitable for high-speed operation.

Angular Contact Ball Bearings:

Angular contact ball bearings are used in applications where both radial and axial loads are present, such as in machine tools, automotive wheel hubs, and aerospace components. They are especially useful for applications that require precise axial positioning and handling of thrust loads.

  • Limitations:

Deep Groove Ball Bearings:

Deep groove ball bearings are not as suitable for handling significant axial loads and may experience skidding under certain conditions due to their deep raceways.

Angular Contact Ball Bearings:

Angular contact ball bearings can experience increased heat generation and wear at higher speeds due to the contact angle of the balls.

In summary, the design, load-carrying capacity, contact angle, and applications differ between deep groove ball bearings and angular contact ball bearings. Choosing the appropriate type depends on the specific load conditions and requirements of the application.

ball bearing

How do Ball Bearings Differ from Other Types of Bearings like Roller Bearings?

Ball bearings and roller bearings are two common types of rolling-element bearings, each with distinct designs and characteristics. Here’s a comparison of ball bearings and roller bearings:

  • Design:

Ball Bearings: Ball bearings use spherical balls to separate and reduce friction between the bearing’s inner and outer rings. The balls enable rolling motion and smooth contact, minimizing friction.

Roller Bearings: Roller bearings, as the name suggests, use cylindrical or tapered rollers instead of balls. These rollers have larger contact areas, distributing loads over a broader surface.

  • Friction and Efficiency:

Ball Bearings: Due to the point contact between the balls and the rings, ball bearings have lower friction and are more efficient at high speeds.

Roller Bearings: Roller bearings have a larger contact area, resulting in slightly higher friction compared to ball bearings. They are more suitable for heavy-load applications where efficiency is prioritized over high speeds.

  • Load Capacity:

Ball Bearings: Ball bearings excel at handling light to moderate loads in both radial and axial directions. They are commonly used in applications where smooth rotation and low friction are important.

Roller Bearings: Roller bearings have a higher load-carrying capacity than ball bearings. They can support heavier radial and axial loads and are preferred for applications with significant loads or impact forces.

  • Variability:

Ball Bearings: Ball bearings come in various designs, including deep groove, angular contact, and thrust ball bearings, each suitable for different applications.

Roller Bearings: Roller bearings have diverse types, including cylindrical, spherical, tapered, and needle roller bearings, each optimized for specific load and motion requirements.

  • Speed Capability:

Ball Bearings: The reduced friction in ball bearings makes them suitable for high-speed applications, such as electric motors and precision machinery.

Roller Bearings: Roller bearings can handle higher loads but are generally better suited for moderate to low speeds due to slightly higher friction.

  • Applications:

Ball Bearings: Ball bearings are used in applications where smooth motion, low friction, and moderate loads are essential, such as electric fans, bicycles, and some automotive components.

Roller Bearings: Roller bearings find applications in heavy machinery, construction equipment, automotive transmissions, and conveyor systems, where heavier loads and durability are crucial.

In summary, ball bearings and roller bearings differ in their design, friction characteristics, load capacities, speed capabilities, and applications. The choice between them depends on the specific requirements of the machinery and the type of loads and forces involved.

China Good quality CZPT CZPT CZPT CZPT Motorcycle Bearing Wheel Bearing Linear Bearing Angular Contact Ball Bearing Taper Roller Bearing Deep Groove Ball Bearing Rulemanes   bearing airChina Good quality CZPT CZPT CZPT CZPT Motorcycle Bearing Wheel Bearing Linear Bearing Angular Contact Ball Bearing Taper Roller Bearing Deep Groove Ball Bearing Rulemanes   bearing air
editor by CX 2024-03-06

China Best Sales Deep Groove Ball Bearing Pullers Front Wheel Hub Pillow Block Linear Wheel Taper Roller Connecting Rod Rear Wheel Needle Bearings Extractor Manufacturing with high quality

Product Description

   

Product Description

 

   deep groove ball bearing pullers front wheel hub pillow block linear wheel taper                  roller connecting rod rear wheel needle bearings extractor manufacturing

  1. Premium Quality: We use top-grade materials and advanced production techniques to ensure exceptional durability and load-bearing capacity.

  2. Stringent Quality Control: Our bearings meet international standards with rigorous inspections at every stage, backed by ISO 9001 certification.

  3. Comprehensive Product Range: We offer a wide variety of bearings including ball, roller, spherical, and custom-designed solutions for diverse applications.

  4. Continuous Innovation: We stay ahead with cutting-edge technology, offering low-noise, high-speed, and long-life bearings.

  5. Responsive Service: We promptly address customer inquiries, provide tailored design services, and ensure timely delivery.

  6. Exceptional After-Sales Support: We stand behind our products with installation guidance, maintenance support, and reliable warranty coverage.

  7. Competitive Pricing: By optimizing processes and economies of scale, we deliver cost-effective solutions without compromising on quality.

In essence, as your bearing supplier, we guarantee premium quality products, innovative solutions, responsive service, and strong value – making us the ideal partner for all your bearing needs.

  /* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

Rolling Body: Roller Bearings
The Number of Rows: Single
Outer Dimension: Small and Medium-Sized (60-115mm)
Material: Bearing Steel
Spherical: Aligning Bearings
Load Direction: Axial Bearing
Samples:
US$ 9999/Piece
1 Piece(Min.Order)

|
Request Sample

ball bearing

What are the Common Signs of Wear or Damage in Ball Bearings that Indicate the Need for Replacement?

Ball bearings are subjected to wear and stress during operation, and over time, they may exhibit signs of damage or deterioration that warrant replacement. Recognizing these signs is crucial to prevent catastrophic failure and ensure safe and reliable operation. Here are the common signs of wear or damage in ball bearings:

  • Unusual Noise:

If you hear unusual grinding, clicking, or rumbling noises coming from the bearing during operation, it may indicate worn-out or damaged components. Unusual noise suggests that the bearing is no longer operating smoothly.

  • Vibration:

Excessive vibration in the machinery can be a sign of bearing wear. Vibrations can result from uneven wear, misalignment, or damaged components within the bearing.

  • Increased Temperature:

Higher operating temperatures than usual may indicate increased friction due to inadequate lubrication, wear, or other issues. Monitoring the bearing’s temperature can help identify potential problems.

  • Irregular Movement:

If you notice irregular movement, jerking, or sticking during rotation, it could be a sign that the bearing is no longer operating smoothly. This may be due to damaged rolling elements or raceways.

  • Reduced Performance:

If the machinery’s performance has decreased, it may be due to a compromised bearing. Reduced efficiency, increased energy consumption, or a decline in overall performance could be indicators of bearing wear.

  • Visible Wear or Damage:

Inspect the bearing for visible signs of wear, such as pitting, scoring, or discoloration on the rolling elements or raceways. Severe wear or damage is a clear indication that the bearing needs replacement.

  • Leakage or Contamination:

If there is evidence of lubricant leakage, contamination, or the presence of foreign particles around the bearing, it suggests that the seal or shield may be compromised, leading to potential damage.

  • Looseness or Excessive Play:

If you can feel excessive play or looseness when manually moving the bearing, it could indicate worn-out components or misalignment.

  • Reduced Lifespan:

If the bearing’s expected lifespan is significantly shorter than usual, it may be due to inadequate lubrication, excessive loads, or improper installation, leading to accelerated wear.

  • Frequent Failures:

If the bearing is consistently failing despite regular maintenance and proper use, it could indicate a chronic issue that requires addressing, such as inadequate lubrication or misalignment.

It’s important to conduct regular inspections, monitor performance, and address any signs of wear or damage promptly. Replacing worn or damaged ball bearings in a timely manner can prevent further damage to machinery, reduce downtime, and ensure safe and efficient operation.

ball bearing

Are there any Industry Standards or Certifications that Ball Bearings should Meet?

Yes, there are several industry standards and certifications that ball bearings should meet to ensure their quality, performance, and reliability. These standards help manufacturers, engineers, and customers assess the suitability of bearings for specific applications. Some of the key standards and certifications for ball bearings include:

  • ISO Standards:

The International Organization for Standardization (ISO) has developed a series of standards related to ball bearings. ISO 15 defines dimensions, boundary dimensions, and tolerances for radial bearings. ISO 281 specifies dynamic load ratings and calculation methods for bearings’ life calculations.

  • ABEC (Annular Bearing Engineering Committee) Ratings:

ABEC ratings are commonly used in North America to indicate the precision and performance of ball bearings. Ratings range from ABEC 1 (lowest precision) to ABEC 9 (highest precision). However, it’s important to note that ABEC ratings focus primarily on dimensional tolerances and do not encompass all aspects of bearing quality.

  • DIN Standards:

The German Institute for Standardization (Deutsches Institut für Normung, DIN) has published various standards related to ball bearings. DIN 625 covers dimensions for deep groove ball bearings, while DIN 616 provides guidelines for precision angular contact ball bearings.

  • JIS (Japanese Industrial Standards):

JIS standards are used in Japan and internationally to define the characteristics and dimensions of various products, including ball bearings. JIS B 1512 outlines the classification and dimensions of rolling bearings.

  • ASTM (American Society for Testing and Materials) Standards:

ASTM has standards that cover various aspects of bearing testing, performance, and materials. ASTM F2215, for instance, specifies the requirements for ball bearings used in surgical implants.

  • CE Marking:

CE marking indicates that a product complies with European Union health, safety, and environmental requirements. It may be required for bearings used in machinery intended to be sold within the EU market.

  • Industry-Specific Standards:

Various industries, such as aerospace, automotive, medical, and nuclear, have specific standards or certifications that bearings must meet to ensure safety, reliability, and compliance with industry-specific requirements.

  • Quality Management Systems:

Manufacturers that adhere to quality management systems, such as ISO 9001, demonstrate their commitment to consistent product quality and customer satisfaction. Certification to these systems indicates that the manufacturing process follows established protocols and best practices.

When selecting ball bearings, it’s important to consider the relevant standards and certifications that align with the application’s requirements. This ensures that the bearings meet recognized quality and performance criteria, ultimately contributing to reliable and efficient operation.

ball bearing

What are the Primary Benefits of Using Ball Bearings in Machinery and Equipment?

Ball bearings offer several primary benefits when used in machinery and equipment. Their design and functionality provide advantages that contribute to the efficient and reliable operation of various applications. Here are the key benefits:

  • Reduced Friction:

One of the primary benefits of ball bearings is their ability to minimize friction between moving parts. The rolling motion of the balls reduces the contact area and sliding friction, leading to smoother operation and less energy loss due to frictional heating.

  • Efficient Load Support:

Ball bearings are engineered to support both radial and axial loads, making them versatile for applications with multidirectional forces. This load-bearing capability allows machinery to handle different types of loads while maintaining performance and stability.

  • Smooth Rotation:

Ball bearings enable smooth and precise rotational movement. The rolling motion of the balls provides consistent motion with minimal resistance, ensuring that machinery operates smoothly and without jerks.

  • High-Speed Capability:

Due to their low friction and efficient rolling action, ball bearings are suitable for high-speed applications. They allow machinery and equipment to achieve and maintain high rotational speeds without excessive wear or heat buildup.

  • Reduced Wear and Maintenance:

The reduced friction in ball bearings leads to lower wear on components. This results in longer service intervals and reduced maintenance requirements, saving both time and maintenance costs.

  • Energy Efficiency:

By minimizing friction and reducing energy losses, ball bearings contribute to the overall energy efficiency of machinery. This is particularly important in applications where energy consumption is a concern.

  • Versatility:

Ball bearings come in various types, sizes, and configurations, allowing them to be used in a wide range of machinery and equipment. They can be customized to suit specific application requirements.

  • Reliability and Longevity:

Ball bearings are designed to withstand heavy loads and harsh operating conditions. Their durability and resistance to wear ensure reliable performance and an extended operational life.

  • Quiet Operation:

Ball bearings contribute to quiet machinery operation due to the smooth rolling motion of the balls. This is particularly important in applications where noise reduction is a consideration.

In summary, the primary benefits of using ball bearings in machinery and equipment include reduced friction, efficient load support, smooth rotation, high-speed capability, reduced wear and maintenance, energy efficiency, versatility, reliability, and quiet operation. These benefits collectively enhance the performance and longevity of machinery across various industries.

China Best Sales Deep Groove Ball Bearing Pullers Front Wheel Hub Pillow Block Linear Wheel Taper Roller Connecting Rod Rear Wheel Needle Bearings Extractor Manufacturing   with high qualityChina Best Sales Deep Groove Ball Bearing Pullers Front Wheel Hub Pillow Block Linear Wheel Taper Roller Connecting Rod Rear Wheel Needle Bearings Extractor Manufacturing   with high quality
editor by CX 2024-02-29

China supplier Slewing Bearing Tapered Roller Steel Ball Bearings Deep Groove Puller Front Wheel Hub Pillow Block Taper Roller Angular Contact Rear Wheel Linear Auto Bearing wholesaler

Product Description

         Slewing bearing Tapered Roller steel ball bearings Deep Groove puller front            wheel hub pillow block taper roller angular contact rear wheel linear  auto bearing 

Application of Slewing bearing

A slewing bearing, also called a turntable bearing, is a type of bearing that allows for a heavy but slow-turning or slowly-oscillating load to be supported in combination (axial, radial and moment loads), often a horizontal platform such as a conventional crane, a swing yarder, or the wind-facing platform of a horizontal-axis (yaw) windmill. In other orientations (e.g. a horizontal axis of rotation) they are used in materials handling grapples, forklift attachments, welding turnover jigs and so on.

Slewing rings range in size from as little as 100mm diameter to well over 15 000mm (often segmented at this size for easy transport and handling); for example the bearings on the Falkirk Wheel are 4 meters diameter and fit over a 3.5 meter axle. Slewing bearings are often made with gear teeth integral with the inner or outer race (or both in rare cases) used to drive the platform relative to the base (for example in winches).

Slewing rings are used in a variety of applications, including:

  • Wind turbines: Slewing bearings are used in wind turbines to support the nacelle and rotor blades.
  • Cranes: Slewing bearings are used in cranes to support the boom and jib.
  • Drilling rigs: Slewing bearings are used in drilling rigs to support the mast and drill string.
  • Robotics: Slewing bearings are used in robotics to support the manipulator arm.
  • Machine tools: Slewing bearings are used in machine tools to support the spindle and workpiece.

Slewing bearings are a critical component in many applications. They are responsible for supporting heavy loads and allowing for smooth and precise movement.

  /* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

Rolling Body: Roller Bearings
The Number of Rows: Single
Outer Dimension: Small and Medium-Sized (60-115mm)
Material: Bearing Steel
Spherical: Aligning Bearings
Load Direction: Axial Bearing
Samples:
US$ 9999/Piece
1 Piece(Min.Order)

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Request Sample

ball bearing

What are the Materials Typically Used in Manufacturing Ball Bearings and Their Advantages?

Ball bearings are manufactured using a variety of materials, each chosen for its specific properties and advantages in various applications. Here are some commonly used materials in ball bearing manufacturing and their respective benefits:

  • High-Carbon Chrome Steel (AISI 52100):

This is the most common material used for ball bearing manufacturing. It offers excellent hardness, wear resistance, and fatigue strength. High-carbon chrome steel bearings are suitable for a wide range of applications, from industrial machinery to automotive components.

  • Stainless Steel (AISI 440C, AISI 304, AISI 316):

Stainless steel bearings are corrosion-resistant and suitable for applications where moisture, chemicals, or exposure to harsh environments are concerns. AISI 440C offers high hardness and corrosion resistance, while AISI 304 and AISI 316 provide good corrosion resistance and are often used in food and medical industries.

  • Ceramic:

Ceramic bearings use silicon nitride (Si3N4) or zirconia (ZrO2) balls. Ceramic materials offer high stiffness, low density, and excellent resistance to corrosion and heat. Ceramic bearings are commonly used in high-speed and high-temperature applications, such as in aerospace and racing industries.

  • Plastic (Polyamide, PEEK):

Plastic bearings are lightweight and offer good corrosion resistance. Polyamide bearings are commonly used due to their low friction and wear properties. Polyether ether ketone (PEEK) bearings provide high-temperature resistance and are suitable for demanding environments.

  • Bronze:

Bronze bearings are often used in applications where self-lubrication is required. Bronze has good thermal conductivity and wear resistance. Bearings made from bronze are commonly used in machinery requiring frequent starts and stops.

  • Hybrid Bearings:

Hybrid bearings combine steel rings with ceramic balls. These bearings offer a balance between the advantages of both materials, such as improved stiffness and reduced weight. Hybrid bearings are used in applications where high speeds and low friction are essential.

  • Specialty Alloys:

For specific applications, specialty alloys may be used to meet unique requirements. For example, bearings used in extreme temperatures or corrosive environments may be made from materials like titanium or hastelloy.

  • Coated Bearings:

Bearings may also be coated with thin layers of materials like diamond-like carbon (DLC) or other coatings to enhance performance, reduce friction, and improve wear resistance.

The choice of material depends on factors such as application requirements, operating conditions, load, speed, and environmental factors. Selecting the right material is essential for ensuring optimal bearing performance, longevity, and reliability in diverse industries and applications.

ball bearing

What Precautions should be taken to Prevent Contamination of Ball Bearings in Industrial Settings?

Preventing contamination of ball bearings is essential to ensure their proper function, longevity, and overall performance in industrial settings. Contaminants such as dust, dirt, debris, and particles can significantly impact bearing operation. Here are important precautions to take to prevent contamination of ball bearings:

  • Effective Sealing:

Choose ball bearings with appropriate seals or shields to prevent the ingress of contaminants. Seals provide a physical barrier against dust, moisture, and particles, ensuring the bearing’s interior remains clean.

  • Clean Environment:

Maintain a clean working environment around the machinery and equipment. Regularly clean the surrounding areas to prevent the accumulation of dirt and debris that could enter the bearings.

  • Proper Handling:

Handle bearings with clean hands and use gloves if necessary. Avoid touching the bearing surfaces with bare hands, as natural skin oils can transfer contaminants onto the bearing.

  • Clean Tools and Equipment:

Use clean tools and equipment during installation and maintenance to prevent introducing contaminants. Ensure that tools are properly cleaned before coming into contact with the bearing components.

  • Contamination-Controlled Workstations:

Establish contamination-controlled workstations for bearing handling, installation, and maintenance. These areas should have proper ventilation, filtered air, and minimal exposure to external contaminants.

  • Proper Lubrication:

Use the correct lubricant in appropriate quantities. Lubricants help create a barrier against contaminants and reduce friction. Regularly inspect and replenish lubrication to maintain its effectiveness.

  • Regular Inspections:

Implement a routine inspection schedule to monitor the condition of the bearings. Look for signs of contamination, wear, and damage. Address any issues promptly to prevent further damage.

  • Training and Education:

Train personnel on proper handling, installation, and maintenance practices to minimize the risk of contamination. Educated employees are more likely to take precautions and prevent accidental contamination.

  • Environmental Controls:

In sensitive environments, such as clean rooms or medical facilities, implement strict environmental controls to minimize the presence of contaminants that could affect bearing performance.

  • Regular Cleaning and Maintenance:

Perform regular cleaning and maintenance of machinery and equipment to prevent the buildup of contaminants. Keep bearings protected during maintenance to prevent debris from entering during the process.

  • Selection of Suitable Bearings:

Choose bearings that are specifically designed for the application’s environmental conditions. Some bearings have advanced sealing options or specialized coatings that enhance contamination resistance.

By implementing these precautions, industries can significantly reduce the risk of contamination in ball bearings, ensuring smooth operation, extended bearing life, and enhanced equipment reliability.

ball bearing

What is a Ball Bearing and How does it Function in Various Applications?

A ball bearing is a type of rolling-element bearing that uses balls to reduce friction between moving parts and support radial and axial loads. It consists of an outer ring, an inner ring, a set of balls, and a cage that separates and maintains a consistent spacing between the balls. Here’s how ball bearings function in various applications:

  • Reduction of Friction:

Ball bearings function by replacing sliding friction with rolling friction. The smooth, spherical balls minimize the contact area between the inner and outer rings, resulting in lower friction and reduced heat generation.

  • Radial and Axial Load Support:

Ball bearings are designed to support both radial loads (forces perpendicular to the shaft’s axis) and axial loads (forces parallel to the shaft’s axis). The distribution of balls within the bearing ensures load-carrying capacity in multiple directions.

  • Smooth Rotational Movement:

Ball bearings facilitate smooth and precise rotational movement. The rolling motion of the balls allows for controlled and continuous rotation with minimal resistance.

  • Applications in Machinery:

Ball bearings are used in a wide range of machinery and equipment, including motors, generators, gearboxes, conveyors, and fans. They enable the efficient transfer of motion while reducing wear and energy losses.

  • Automotive Industry:

Ball bearings are extensively used in automobiles for various applications, including wheel hubs, transmission systems, steering mechanisms, and engine components. They provide reliability and durability in challenging automotive environments.

  • Industrial Machinery:

In industrial settings, ball bearings support rotating shafts and ensure the smooth operation of equipment such as pumps, compressors, and machine tools.

  • High-Speed Applications:

Ball bearings are suitable for high-speed applications due to their low friction and ability to accommodate rapid rotation. They are used in applications like electric motors and aerospace components.

  • Precision Instruments:

For precision instruments, such as watches, cameras, and medical devices, ball bearings provide accurate rotational movement and contribute to the overall performance of the instrument.

  • Variety of Sizes and Types:

Ball bearings come in various sizes, configurations, and materials to suit different applications. Different types include deep groove ball bearings, angular contact ball bearings, thrust ball bearings, and more.

In summary, ball bearings are essential components in a wide range of applications where smooth rotation, load support, and reduced friction are critical. Their versatility, reliability, and efficiency make them indispensable in industries spanning from automotive to industrial machinery to precision instruments.

China supplier Slewing Bearing Tapered Roller Steel Ball Bearings Deep Groove Puller Front Wheel Hub Pillow Block Taper Roller Angular Contact Rear Wheel Linear Auto Bearing   wholesalerChina supplier Slewing Bearing Tapered Roller Steel Ball Bearings Deep Groove Puller Front Wheel Hub Pillow Block Taper Roller Angular Contact Rear Wheel Linear Auto Bearing   wholesaler
editor by CX 2024-02-22

China Good quality Enzolo Motorcycle Bearing Wheel Bearing Auto Bearing Linear Bearing Angular Contact Ball Bearing Taper Roller Bearing Deep Groove Ball Bearing carrier bearing

Product Description

 

Enzolo Profile

HangZhou Enzolo Technology Co., Ltd is the major worldwide manufacturer and supplier of motorcycle, scooter and ATV parts and accessories for over 20 years.
Our strengths are efficient management ( fully-operated ERP system) and superior quality control ( inspect 1 by one ). The most important thing is the sincere service that we provide.
We have a experienced team of professional sales to maintain excellent communication with clients and provide clients-oriented after-sale service.
ENZOLO offered complete one-stop service. If you need any motorcycle parts and accessories, please send us photos or drawings or samples to get fast quotation !

ENZOLO Main Motorcycle Models

Honda Models:
C100, C110, C125, SUPRA110, WAVE110, SPACY110, WAVE125, INVOVAi125, ECO DELUXE 100, CD100 Hero Splendor, WH100, WH125, PCX125, CG125, CG150, CG200, CG250, CG300, WY125, WY150, CGL125, CB110, CB125, STORM125, CB1-125, CBZ160, CB190, CBR250, CBX250, NXR125 BROSS, NXR150 BROSS, NXR200 BROSS, CTX200, CBF125, CBF150, etc.

Suzuki Models:
AX100, AX4, GD110, QS110, SMASH110, VIVAX115, AN125, AN150, GN125, EN125, GS125, GS150R, GIXXER, GSX150, DR200, etc.

Yamaha Models:
T50, T80, V50, JOG50, BWS50, V80, CY80, RX100, RX115, YB100, JOG100, BWS100, CRUX110, JY110, CRYPTON, T105, RS110, RX125, BWS125, DT125, DTK125, DT175, DTK175, YBR125, SRZ125, SRZ150, XTZ125, XTZ150, FAZER150, XT200, LC135, FZ16, etc.

Bajaj Models:
CT100, Boxer BM100, BM150, Pulsar180, Pulsar200, Pulsar200 NS, Pulsar220, Pulsar220 NS, XCD125, XCD135, Platina125, Caliper, KB4S, 3W4S, RE205D, RE4S, etc.

Other Brands:
JH70, JH90, DY90, DY100, CD110, JH110, KTM100, LF110, LX110, LX125, LX150, DY125, DY150, ZS200, KEEWAY, TVS start, TVS Sport, TVS king, TVS victor, TVS apache160, TVS apache180, HERO, XY125, XY150, XY200GY-6, XY200GY-8, XY200GY, GY200, CROSS200, BROSS200, GY6-80, GY6-100, GY6-125, GY6-150, SYM125, MIO100, CBT125, CM150, TIGER150, TIGER200, QJ125, HJ125-8, HJ150, etc.

ENZOLO Motorcycle Parts:
Cylinder head, Valve, Crankshaft, Piston Ring, Brake Shoes, Handle Switch, Cylinder kit, Piston Kit, Carburetor, Clutch, Motor, Tire, Camshaft, Clutch Plate, Timing Chain, Wheel Hub, Side Mirror, Wheel Rim , Brake Pad, Brake Cylinder, Lock System, Sprocket Kit, Speedometer, Headlight, Spark Plug,Ignition Coil, Lighting Series, Fuel Tank, Front Shock Absorber, Rear Shock Absorber, Front Shock Absorber, Transmission Shaft Assy, Foot Pegs, Shift Lever, Clutch Line, Front Brake Line, Chain, Seat, Fuel Tank , Side Cover,etc.
 

Detailed Photos

 

Product Description

Brand ENZOLO
OEM & ODM Services Available
OEM Packaging & Logo Available
Product Name Bearings
Packaging ENZOLO Packaging/Neutral/Customized
Please Send Photo of the Parts To Get Fast Quotation
Motorcycle Fitment For Motorcycles 
ENZOLO  Welcome Dealers

Our Advantages

Company Activities

FAQ

1. Do you offer samples ? Are samples free ?

Yes, we offer samples, but you need to pay samples and shipping. We will refund your sample order when you place the first order with ENZOLO.

2. Can you do OEM service for me ?

Yes, we accept OEM orders. You can send logo and package files to us, we will send you sample photos and videos as soon as we can. 

3. What’s your payment terms ?

30% deposit by T/T, 70% before shipping. 

4. How long is your lead time ?

Generally it will take around 30 days after receiving your advance payment, specific delivery time depends on the parts and quantity of your order. 

5. How can i get the price quickly ?

It is ok to get a fast quotation if you send us photos, drawings or samples of your parts. 
 

Fast Quotation

 
  /* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

After-sales Service: One Year
Warranty: One Year
Type: Steering Bearing
Material: Stainless Steel
Certification: ISO9001:2001, CCC, SONCAP, CE
Number of Row: Single Row
Samples:
US$ 1/Piece
1 Piece(Min.Order)

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Request Sample

Customization:
Available

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Customized Request

ball bearing

What are the Challenges Associated with Noise Reduction in Ball Bearings?

Noise reduction in ball bearings is a crucial consideration, especially in applications where noise levels must be minimized for operational efficiency and user comfort. While ball bearings are designed to operate smoothly, there are several challenges associated with reducing noise in their operation:

  • Vibration:

Vibration generated by the movement of rolling elements and raceways can lead to noise. Even minor irregularities in bearing components or the mounting system can cause vibration that translates into audible noise.

  • Bearing Type and Design:

The type and design of the ball bearing can impact noise generation. For example, deep groove ball bearings are known for their quiet operation, while angular contact bearings can generate more noise due to their higher contact angles.

  • Lubrication:

Improper or inadequate lubrication can result in increased friction and wear, leading to noise. Choosing the right lubricant and maintaining proper lubrication levels are essential for reducing noise in ball bearings.

  • Bearing Clearance and Preload:

Incorrect clearance or preload settings can lead to noise issues. Excessive clearance or inadequate preload can cause the rolling elements to impact the raceways, resulting in noise during rotation.

  • Material and Manufacturing Quality:

The quality of materials and manufacturing processes can affect noise levels. Inconsistent or low-quality materials, improper heat treatment, or manufacturing defects can lead to noise generation during operation.

  • Surface Finish:

The surface finish of the rolling elements and raceways can impact noise. Rough surfaces can generate more noise due to increased friction and potential irregularities.

  • Sealing and Shielding:

Seals and shields that protect bearings can influence noise levels. While they are necessary for contamination prevention, they can also cause additional friction and generate noise.

  • Operating Conditions:

External factors such as temperature, speed, and load can influence noise levels. High speeds or heavy loads can amplify noise due to increased stress on the bearing components.

  • Wear and Deterioration:

As ball bearings wear over time, noise levels can increase. Worn components or inadequate lubrication can lead to more significant noise issues as the bearing operates.

To address these challenges and reduce noise in ball bearings, manufacturers and engineers employ various techniques, such as optimizing design, selecting suitable bearing types, using proper lubrication, maintaining accurate preload settings, and ensuring high-quality materials and manufacturing processes. Noise reduction efforts are essential to improve overall product quality, meet noise regulations, and enhance user experience in various applications.

ball bearing

What are the Differences between Deep Groove Ball Bearings and Angular Contact Ball Bearings?

Deep groove ball bearings and angular contact ball bearings are two common types of ball bearings, each designed for specific applications and load conditions. Here are the key differences between these two types of bearings:

  • Design and Geometry:

Deep Groove Ball Bearings:

Deep groove ball bearings have a simple design with a single row of balls that run along deep raceways in both the inner and outer rings. The rings are usually symmetrical and non-separable, resulting in a balanced load distribution.

Angular Contact Ball Bearings:

Angular contact ball bearings have a more complex design with two rows of balls, oriented at an angle to the bearing’s axis. This arrangement allows for the transmission of both radial and axial loads, making them suitable for combined loads and applications requiring high precision.

  • Load Carrying Capacity:

Deep Groove Ball Bearings:

Deep groove ball bearings are primarily designed to carry radial loads. They can handle axial loads in both directions, but their axial load-carrying capacity is generally lower compared to angular contact ball bearings.

Angular Contact Ball Bearings:

Angular contact ball bearings are specifically designed to handle both radial and axial loads. The contact angle between the rows of balls determines the bearings’ axial load-carrying capacity. They can handle higher axial loads and are commonly used in applications with thrust loads.

  • Contact Angle:

Deep Groove Ball Bearings:

Deep groove ball bearings have no defined contact angle, as the balls move in a deep groove along the raceways. They are primarily designed for radial loads.

Angular Contact Ball Bearings:

Angular contact ball bearings have a specified contact angle between the rows of balls. This contact angle allows them to carry both radial and axial loads and is crucial for their ability to handle combined loads.

  • Applications:

Deep Groove Ball Bearings:

Deep groove ball bearings are commonly used in applications that primarily require radial loads, such as electric motors, pumps, and conveyor systems. They are also suitable for high-speed operation.

Angular Contact Ball Bearings:

Angular contact ball bearings are used in applications where both radial and axial loads are present, such as in machine tools, automotive wheel hubs, and aerospace components. They are especially useful for applications that require precise axial positioning and handling of thrust loads.

  • Limitations:

Deep Groove Ball Bearings:

Deep groove ball bearings are not as suitable for handling significant axial loads and may experience skidding under certain conditions due to their deep raceways.

Angular Contact Ball Bearings:

Angular contact ball bearings can experience increased heat generation and wear at higher speeds due to the contact angle of the balls.

In summary, the design, load-carrying capacity, contact angle, and applications differ between deep groove ball bearings and angular contact ball bearings. Choosing the appropriate type depends on the specific load conditions and requirements of the application.

ball bearing

What are the Different Components that Make up a Typical Ball Bearing?

A typical ball bearing consists of several essential components that work together to reduce friction and support loads. Here are the main components that make up a ball bearing:

  • Outer Ring:

The outer ring is the stationary part of the bearing that provides support and houses the other components. It contains raceways (grooves) that guide the balls’ movement.

  • Inner Ring:

The inner ring is the rotating part of the bearing that attaches to the shaft. It also contains raceways that correspond to those on the outer ring, allowing the balls to roll smoothly.

  • Balls:

The spherical balls are the rolling elements that reduce friction between the inner and outer rings. Their smooth rolling motion enables efficient movement and load distribution.

  • Cage or Retainer:

The cage, also known as the retainer, maintains a consistent spacing between the balls. It prevents the balls from touching each other, reducing friction and preventing jamming.

  • Seals and Shields:

Many ball bearings include seals or shields to protect the internal components from contaminants and retain lubrication. Seals provide better protection against contaminants, while shields offer less resistance to rotation.

  • Lubricant:

Lubrication is essential to reduce friction, wear, and heat generation. Bearings are typically filled with lubricants that ensure smooth movement between the balls and raceways.

  • Flanges and Snap Rings:

In some designs, flanges or snap rings are added to help position and secure the bearing in its housing or on the shaft. Flanges prevent axial movement, while snap rings secure the bearing radially.

  • Raceways:

Raceways are the grooved tracks on the inner and outer rings where the balls roll. The shape and design of the raceways influence the bearing’s load-carrying capacity and performance.

  • Anti-Friction Shield:

In certain high-speed applications, a thin anti-friction shield can be placed between the inner and outer rings to minimize friction and heat generation.

These components work together to enable the smooth rolling motion, load support, and reduced friction that characterize ball bearings. The proper design and assembly of these components ensure the bearing’s optimal performance and longevity in various applications.

China Good quality Enzolo Motorcycle Bearing Wheel Bearing Auto Bearing Linear Bearing Angular Contact Ball Bearing Taper Roller Bearing Deep Groove Ball Bearing   carrier bearingChina Good quality Enzolo Motorcycle Bearing Wheel Bearing Auto Bearing Linear Bearing Angular Contact Ball Bearing Taper Roller Bearing Deep Groove Ball Bearing   carrier bearing
editor by CX 2024-02-12

China manufacturer 10% off Track Roller U V W Groove Conveyor Pulleys Wheel Cam Follwer Sliding Rolling Spherical Guide Line Ball Bearing with high quality

Product Description

 

Track rollers-SG series   (mm)  
g dw d D C B L d2 H Cw(KN) Cow(KN) Frperm(KN)
SG15 8 6 5 17 8 5.75 20.46 8.6 1 1.27 0.82 1.3
SG15-10 9 10 5 17 8 5.75 25.5 8.6 1 1.27 0.82 1.3
SG20 25 8 6 24 11 7.25 28.62 11.1 1.2 3.4 1.7 1.3
SG25 49 10 8 30 14 8.5 35.77 13 1.5 3.67 2.28 1.3
SG35 136 12 12 42 19 12.5 48.93 18 1.5 8.5 5.1 5.1
SG15N 8 6 5 17 8 5.75 20.46 8.6 0.5 1.27 0.82 1.3
SG20N 25 8 6 24 11 7.25 28.62 11.1 0.7 3.4 1.7 1.3
SG25N 49 10 8 30 14 8.5 35.77 13 1 3.67 2.28 1.3
SG35N 136 12 12 42 19 12.5 48.93 18 1 8.5 5.1 5.1
LFR50/5-4N 8 4 5 16 7 5 18 6.9 0 2.02 0.93 1.3
LFR50/5-5 8 5 5 17 7 5 20 6.9 0 2.02 0.93 1.3
LFR50/5N 8 6 5 17 7 5 21 6.9 0 2.02 0.93 1.3
LFR50/8N 25 6 8 24 11 7 28 12.3 0 3.67 2.28 1.3
LFR50/8-8N 25 6 8 24 11 7 29 12.3 0 3.67 2.28 1.3

 

GNYAR   KG dw d D B C A a rs Cw(KN) Cow(KN)
LV20/7ZZ 17 10 7 22 11 11 14.5 120 0.3 3.78 2.05
LV20/8ZZ 49 10 8 30 14 14 18.1 120 0.3 5.13 2.67
LV202-38ZZ 87 10 15 38 17 17 22.25 120 0.5 8.47 5.37
LV202-40ZZ 110 10 15 40 18 18 22 120 0.5 8.47 5.37
LV201ZZ 130 20 12 41 20 20 28 120 0.3 8.47 5.37
LV201-14.2RS 107 14 12 39.9 18 18 24 1 19.05 0.75

 

Do you prefer that we remind you ?

Immediate and free call/email back

2nd step: the outside diameter of the bearing

  •  
  • A / Put your bearing on the grid as shown in the diagram.
  •  
  • B / Mark the outline of the outer ring. For more convenience, use a pencil with a fine point.
  •  
  • C / For ease of reading, do not hesitate to draw lines to the axes and then take the measurement.

 

 

 

 

3rd step: the thickness of the bearing

  •  
  • A / In the same way as for the outer diameter and the bore, place your bearing on the edge on the grid as shown in the diagram.
  • B / Draw the outer contour.
  •  
  • C / For ease of reading, do not hesitate to draw lines to the axes and then take the measurement.

 

Conclusion :

You now have 3 measuring elements that will allow you to identify your bearing: the inside diameter (or bore), the outside diameter, and the thickness.

You can postpone these measurements in our bearing search tool on our website

FAQ

 1.How many is the MOQ of your company?
   Our company MOQ is 1pcs.
 

2.Could you accept OEM and customize?
   YES, OEM is accepted and we can customize for you according to sample or drawing. 

 

3.How do you guaranee the quality?
Evaluate the samples and drawings before production
Eva;iate the production process,and following it in schedual,guarantee the delievery time in time.
Evaluate the bearing dimension,clearance,noise,rotations of final productions.
Evaluate the fause products,block it and make an improve action.
 

 

4.Do you have stocks?
   YES, we have most of the bearings showing on made in china in stock,please contact us for order details.

 

5.Do you have only Hubs Wheel Auto Bearing?

    YES,we have more others types bearings,ANY BEARING YOU CAN THINK OF NOW,WE HAVE!

 

/* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

Contact Angle: Normal
Aligning: Non-Aligning Bearing
Separated: Unseparated
Rows Number: Single
Load Direction: Radial Bearing
Material: Bearing Steel
Customization:
Available

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Customized Request

ball bearing

What are the Common Signs of Wear or Damage in Ball Bearings that Indicate the Need for Replacement?

Ball bearings are subjected to wear and stress during operation, and over time, they may exhibit signs of damage or deterioration that warrant replacement. Recognizing these signs is crucial to prevent catastrophic failure and ensure safe and reliable operation. Here are the common signs of wear or damage in ball bearings:

  • Unusual Noise:

If you hear unusual grinding, clicking, or rumbling noises coming from the bearing during operation, it may indicate worn-out or damaged components. Unusual noise suggests that the bearing is no longer operating smoothly.

  • Vibration:

Excessive vibration in the machinery can be a sign of bearing wear. Vibrations can result from uneven wear, misalignment, or damaged components within the bearing.

  • Increased Temperature:

Higher operating temperatures than usual may indicate increased friction due to inadequate lubrication, wear, or other issues. Monitoring the bearing’s temperature can help identify potential problems.

  • Irregular Movement:

If you notice irregular movement, jerking, or sticking during rotation, it could be a sign that the bearing is no longer operating smoothly. This may be due to damaged rolling elements or raceways.

  • Reduced Performance:

If the machinery’s performance has decreased, it may be due to a compromised bearing. Reduced efficiency, increased energy consumption, or a decline in overall performance could be indicators of bearing wear.

  • Visible Wear or Damage:

Inspect the bearing for visible signs of wear, such as pitting, scoring, or discoloration on the rolling elements or raceways. Severe wear or damage is a clear indication that the bearing needs replacement.

  • Leakage or Contamination:

If there is evidence of lubricant leakage, contamination, or the presence of foreign particles around the bearing, it suggests that the seal or shield may be compromised, leading to potential damage.

  • Looseness or Excessive Play:

If you can feel excessive play or looseness when manually moving the bearing, it could indicate worn-out components or misalignment.

  • Reduced Lifespan:

If the bearing’s expected lifespan is significantly shorter than usual, it may be due to inadequate lubrication, excessive loads, or improper installation, leading to accelerated wear.

  • Frequent Failures:

If the bearing is consistently failing despite regular maintenance and proper use, it could indicate a chronic issue that requires addressing, such as inadequate lubrication or misalignment.

It’s important to conduct regular inspections, monitor performance, and address any signs of wear or damage promptly. Replacing worn or damaged ball bearings in a timely manner can prevent further damage to machinery, reduce downtime, and ensure safe and efficient operation.

ball bearing

How do Ceramic Ball Bearings Compare to Traditional Steel Ball Bearings in Terms of Performance?

Ceramic ball bearings and traditional steel ball bearings have distinct characteristics that can impact their performance in various applications. Here’s a comparison of how these two types of bearings differ in terms of performance:

  • Material Composition:

Ceramic Ball Bearings:

Ceramic ball bearings use ceramic rolling elements, typically made from materials like silicon nitride (Si3N4) or zirconium dioxide (ZrO2). These ceramics are known for their high hardness, low density, and resistance to corrosion and wear.

Traditional Steel Ball Bearings:

Traditional steel ball bearings use steel rolling elements. The type of steel used can vary, but common materials include chrome steel (52100) and stainless steel (440C). Steel bearings are known for their durability and strength.

  • Friction and Heat:

Ceramic Ball Bearings:

Ceramic bearings have lower friction coefficients compared to steel bearings. This results in reduced heat generation during operation, contributing to higher efficiency and potential energy savings.

Traditional Steel Ball Bearings:

Steel bearings can generate more heat due to higher friction coefficients. This can lead to increased energy consumption in applications where efficiency is crucial.

  • Weight:

Ceramic Ball Bearings:

Ceramic bearings are lighter than steel bearings due to the lower density of ceramics. This weight reduction can be advantageous in applications where minimizing weight is important.

Traditional Steel Ball Bearings:

Steel bearings are heavier than ceramic bearings due to the higher density of steel. This weight may not be as critical in all applications but could impact overall equipment weight and portability.

  • Corrosion Resistance:

Ceramic Ball Bearings:

Ceramic bearings have excellent corrosion resistance, making them suitable for applications in corrosive environments, such as marine or chemical industries.

Traditional Steel Ball Bearings:

Steel bearings are susceptible to corrosion, especially in harsh environments. Stainless steel variants offer improved corrosion resistance but may still corrode over time.

  • Speed and Precision:

Ceramic Ball Bearings:

Ceramic bearings can operate at higher speeds due to their lower friction and ability to withstand higher temperatures. They are also known for their high precision and low levels of thermal expansion.

Traditional Steel Ball Bearings:

Steel bearings can operate at high speeds as well, but their heat generation may limit performance in certain applications. Precision steel bearings are also available but may have slightly different characteristics compared to ceramics.

  • Cost:

Ceramic Ball Bearings:

Ceramic bearings are generally more expensive to manufacture than steel bearings due to the cost of ceramic materials and the challenges in producing precision ceramic components.

Traditional Steel Ball Bearings:

Steel bearings are often more cost-effective to manufacture, making them a more economical choice for many applications.

In conclusion, ceramic ball bearings and traditional steel ball bearings offer different performance characteristics. Ceramic bearings excel in terms of low friction, heat generation, corrosion resistance, and weight reduction. Steel bearings are durable, cost-effective, and widely used in various applications. The choice between the two depends on the specific requirements of the application, such as speed, precision, corrosion resistance, and budget considerations.

ball bearing

Can you Explain the Various Types of Ball Bearings and their Specific Use Cases?

Ball bearings come in various types, each designed to meet specific application requirements. Here’s an overview of the different types of ball bearings and their specific use cases:

  • Deep Groove Ball Bearings:

Deep groove ball bearings are the most common and versatile type. They have a deep raceway that allows them to handle both radial and axial loads. They are used in a wide range of applications, including electric motors, household appliances, automotive components, and industrial machinery.

  • Angular Contact Ball Bearings:

Angular contact ball bearings have a contact angle that enables them to handle both radial and axial loads at specific angles. They are suitable for applications where combined loads or thrust loads need to be supported, such as in machine tool spindles, pumps, and agricultural equipment.

  • Self-Aligning Ball Bearings:

Self-aligning ball bearings have two rows of balls and are designed to accommodate misalignment between the shaft and the housing. They are used in applications where shaft deflection or misalignment is common, such as conveyor systems, textile machinery, and paper mills.

  • Thrust Ball Bearings:

Thrust ball bearings are designed to support axial loads in one direction. They are commonly used in applications where axial loads need to be supported, such as in automotive transmissions, steering systems, and crane hooks.

  • Single-Row vs. Double-Row Bearings:

Single-row ball bearings have a single set of balls and are suitable for moderate load and speed applications. Double-row ball bearings have two sets of balls and offer higher load-carrying capacity. Double-row designs are used in applications such as machine tool spindles and printing presses.

  • Miniature and Instrument Ball Bearings:

Miniature ball bearings are smaller in size and are used in applications with limited space and lower load requirements. They are commonly used in small electric motors, medical devices, and precision instruments.

  • Max-Type and Conrad Bearings:

Max-type ball bearings have a larger number of balls to increase load-carrying capacity. Conrad bearings have fewer balls and are used in applications with moderate loads and speeds.

  • High-Precision Ball Bearings:

High-precision ball bearings are designed for applications where accuracy and precision are critical, such as machine tool spindles, aerospace components, and optical instruments.

  • High-Speed Ball Bearings:

High-speed ball bearings are engineered to minimize friction and accommodate rapid rotation. They are used in applications such as dental handpieces, turbochargers, and centrifuges.

In summary, the various types of ball bearings are tailored to different application requirements, including load type, direction, speed, and environmental conditions. Selecting the appropriate type of ball bearing ensures optimal performance and longevity in specific applications.

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editor by CX 2024-02-06

China best CZPT CZPT Ball and Roller Bearing Lm11749/10 Tapered Roller Bearings wheel bearing

Product Description

Timken CZPT Ball and Tapered Roller Bearing Factory Lm11749/10 Inch Taper Roller Bearing

NO 1. our adwantages:

1. 14 years bearing products manufacturing and 4 years exporting experiences.
2. OEM order and non-standard bearing order can be accepted.
3. Our main bearing products include Deep groove ball bearings, tapered roller bearings, cylindrical rollerbearings, spherical ball bearings, spherical roller bearings, single row angular contact bearings, double row angular contact bearings, needle roller bearings, thrust ball bearings, spherical plain bearings, spherical bearings, automotive bearings pump bearings, and many nonstandard bearings are also in our product range.
4. Sample available

 

NO 2. Description: Inch Tapered Roller bearing

1. Inch Taper roller bearing mainly bear radial primarily diameter, the axial load. Bearing capacity depends on the Angle of the outer ring raceway, the greater the Angle, the greater the carrying capacity.

2. Inch Taper roller bearing type belongs to the separation bearing, , according to the bearing the number of columns of the scroll body can be divided into single row, double row and 4 row circular cone roller bearings.
3. Single row inch taper roller bearing clearance to users in the installation adjustment; Double row and four row circular cone roller bearings clearance has according to user requirements for a given when the products leave the factory, not the user.
4.Tapered roller bearing are widely used in car: front-wheel, rear wheel, transmission, differential pinion shaft. Machine tool spindles, construction machinery, largescale agricultural machinery, railway vehicles, gear reduction, the rolling mill roll neck and deceleration devices
5. Equipment, instrument, building machinery, rolling stock agricultural machinery and various specialized machineries.

 

 NO 3. OEM all brand bearing

1. deep groove ball bearing 6000,6200,6300,6400,61800,61900,Z,RS,ZZ,2RS

2. spherical roller bearing 22200,22300,23000,24000,23100,24100,CA,CC,E,W33

3. cylindrical roller bearing N,NU,NJ,NN,NUP,E,ECP,ECM,ECJ

4. taper roller bearing 35710,30300,32200,32300,31300,32000

5. Aligning ball bearing 1200,1300,2200,2300,

6. needle roller bearing NA,NAV,NK,NKI,RNA,NK,RNAV,ZKLF,ZKLN,ZARF,ZARN

7. thrust ball bearing 51100,51200,51300,51400,E,M

8. angular contact ball bearing7000,7100,7200,7300,AC,BECBM,C 

9. spherical plain bearing GE,GEG,GEEW,U,UC,UG,GX,GAC,SA,SABP

10.Wheel hub bearing /ceramic bearing/plastic bearing/lazy susan bearing

 

 NO 4. Tapered Roller Bearing Specification:

Seals Types OPEN
Vibration Level Z1V1,Z2V2,Z3V3
Clearance C2,C0,C3,C4,C5
Tolerance Codes ABEC-1,ABEC-3,ABEC-5
Materral GCr15-China/AISI52100-USA/Din100Cr6-Germany
MOQ 1Set at least
Delivery Time 5-15 days after contract
Payment Terms TT/PAPAL/WESTERN UNION
Package Tube package+outer carton+pallets;
Single box+outer carton+pallets;
Tube packge+middle box+outer carton+pallets;
According to your requirement

NO 5. Tapered Roller Bearing Models: 

 

   (mm)  

Cr(N)

Cor(N)

(rpm) (mm)
a
e   (kg)  
d D T B C r1
(min)
r2
(min)
Cone Cup     da
(min)
db
(max)
Cone Cup Cone Cup        
15.875 34.988 10.998 10.998 8.712 1.3 1.3 L21549 L21511 13800 13400 11000 15000 3.3 0.32 1.9 1 0.033 0.019 L21549 L21511
15.875 42.862 14.288 14.288 9.525 1.5 1.5 11590 11520 17800 17800 8500 12000 1.1 0.7 0.85 0.47 0.06 0.04 11590 11520
15.875 42.863 14.288 14.288 9.525 1.6 1.6 H-11590 H-11520 17800 17700 8600 12000 1.2 0.7 0.85 0.47 0.06 0.041 H-11590 H-11520
16.993 39.992 12.014 11.153 9.525 0.8 1.3 A6067 A6157 14900 15700 10000 14000 1.5 0.53 1.1 0.63 0.04 0.032 A6067 A6157
17.462 39.878 13.843 14.605 10.668 1.3 1.3 LM11749 LM11710 23400 23000 10000 13000 5.2 0.29 2.1 1.2 0.055 0.026 LM11749 LM11710
17.463 39.878 13.843 14.605 10.668 1.2 1.2 H-LM11749 H-LM11710 25400 26000 8800 12000 5.1 0.29 2.1 1.15 0.058 0.571 H-LM11749 H-LM11710
19.05 39.992 12.014 11.153 9.525 1 1.3 A6075 A6157 14900 15700 10000 14000 1.5 0.53 1.1 0.63 0.037 0.032 A6075 A6157
19.05 45.237 15.494 16.637 12.065 1.2 1.2 H-LM11949 H-LM11910 29400 35710 7800 11000 5.5 0.3 2 1.1 0.081 0.044 H-LM11949 H-LM11910
19.05 45.237 15.494 16.637 12.065 1.3 1.3 LM11949 LM11910 29900 30500 9000 12000 5.6 0.3 2 1.1 0.08 0.045 LM11949 LM11910
19.05 47 14.381 14.381 11.112 1.3 1.3 05075 5715 24900 25400 8500 11000 3.9 0.36 1.7 0.92 0.074 0.046 05075 5715
19.05 49.225 18.034 19.05 14.288 1.2 1.2 H- 0571 7 H-5715 37700 37700 7500 10000 7.4 0.27 2.26 1.24 0.116 0.066 H- 0571 7 H-5715
19.05 49.225 18.034 19.05 14.288 1.3 1.3 0571 7 5715 37500 37500 8500 11000 9.1 0.27 2.3 1.2 0.11 0.065 0571 7 5715
19.05 49.225 21.209 19.05 17.463 1.3 1.5 0571 7 5716 37500 37500 8500 11000 7.3 0.27 2.3 1.2 0.11 0.085 0571 7 5716
19.05 49.225 21.209 19.05 17.463 1.3 3.5 0571 7 5714 37500 37500 8500 11000 7.3 0.27 2.3 1.2 0.11 0.081 0571 7 5714
19.05 49.225 19.845 21.539 14.288 1.3 1.3 09078 5715 37500 37500 8500 11000 9.1 0.27 2.3 1.2 0.11 0.065 09078 5715
19.05 49.225 23.02 21.539 17.463 1.3 1.5 09078 5716 37500 37500 8500 11000 7.3 0.27 2.3 1.2 0.11 0.085 09078 5716
19.05 49.225 23.02 21.539 17.463 1.3 3.5 09078 5714 37500 37500 8500 11000 7.3 0.27 2.3 1.2 0.11 0.081 09078 5714
19.05 49.225 19.845 21.539 14.288 1.3 1.3 09074 5715 37500 37500 8500 11000 9.1 0.27 2.3 1.2 0.11 0.065 09074 5715
19.05 49.225 23.02 21.539 17.463 1.3 1.5 09074 5716 37500 37500 8500 11000 7.3 0.27 2.3 1.2 0.11 0.085 09074 5716
19.05 49.225 23.02 21.539 17.463 1.3 3.5 09074 5714 37500 37500 8500 11000 7.3 0.27 2.3 1.2 0.11 0.081 09074 5714
19.987 47 14.381 14.381 11.112 1.5 1.3 05079 5715 24900 25400 8500 11000 3.9 0.36 1.7 0.92 0.07 0.046 05079 5715
20.638 49.225 19.845 19.845 15.875 1.5 1.5 12580 12520 36000 37000 8000 11000 7.1 0.32 1.9 1 0.115 0.066 12580 12520
21.43 50.005 17.526 18.288 13.97 1.17 1.17 H-M12649 H-M12610 39100 40700 7000 10000 6.4 0.28 2.16 1.19 0.112 0.06 H-M12649 H-M12610
21.43 50.005 17.526 18.288 13.97 1.3 1.3 M12649 M12610 37000 37500 8000 11000 6.4 0.28 2.2 1.2 0.11 0.059 M12649 M12610
22 45.237 15.494 16.637 12.065 1.27 1.27 H-LM12749 H-LM12710 35710 34600 7400 10000 5.5 0.31 1.96 1.08 0.078 0.038 H-LM12749 H-LM12710
22 45.237 15.494 16.637 12.065 1.3 1.3 LM12749 LM12710 28700 33000 8500 11000 5.4 0.31 2 1.1 0.079 0.039 LM12749 LM12710
22 45.975 15.494 16.637 12.065 1.27 1.27 H-LM12749 H-LM12711 35710 34600 7400 10000 5.5 0.31 1.96 1.08 0.078 0.043 H-LM12749 H-LM12711
22.225 50.005 13.495 14.26 9.525 1.3 1 07087 5716 26000 27700 7500 10000 2.9 0.4 1.5 0.82 0.095 0.035 07087 5716
22.225 50.005 17.526 18.288 13.97 1.3 1.3 M12648 M12610 37000 37500 8000 11000 6.4 0.28 2.2 1.2 0.107 0.059 M12648 M12610
22.225 51.994 15.011 14.26 12.7 1.3 1.3 07087 07204 26000 27700 7500 10000 4.4 0.4 1.5 0.82 0.094 0.06 07087 07204
22.225 52.388 19.368 20.168 14.288 1.5 1.5 1380 1328 42500 47500 7500 10000 7.6 0.29 2.1 1.1 0.13 0.067 1380 1328
22.225 52.388 19.368 20.168 14.288 1.6 1.6 H-1380 H-1328 36700 37900 6700 9400 7.7 0.29 2.05 1.13 0.131 0.068 H-1380 H-1328
22.225 57.15 22.225 22.225 17.463 0.8 1.6 H-1280 H-1220 52600 55700 6300 8900 7.9 0.35 1.73 0.95 0.188 0.107 H-1280 H-1220
23.812 56.896 19.368 19.837 15.875 0.8 1.3 1779 1729 40500 44000 7100 9500 6.8 0.31 2 1.1 0.143 0.1 1779 1729
24.981 50.005 13.495 14.26 9.525 1.5 1 07098 5716 26000 27700 7500 10000 2.9 0.4 1.5 0.82 0.085 0.035 07098 5716
24.981 51.994 15.011 14.26 12.7 1.5 1.3 07098 07204 26000 27700 7500 10000 2.9 0.4 1.5 0.82 0.085 0.06 07098 07204
25 50.005 13.495 14.26 9.525 1.5 1 07097 5716 26000 27700 7500 10000 2.9 0.4 1.5 0.82 0.096 0.035 07097 5716
25 51.994 15.011 14.26 12.7 1.5 1.3 07097 07204 26000 27700 7500 10000 2.9 0.4 1.5 0.82 0.096 0.06 07097 07204
25.4 50.005 13.495 14.26 9.525 1 1 5710 5716 26000 27700 7500 10000 2.9 0.4 1.5 0.82 0.08 0.035 5710 5716
25.4 50.292 14.224 14.732 10.668 1.2 1.2 H-L44643 H-L44610 31200 37000 6500 9100 3.2 0.37 1.6 0.88 0.092 0.04 H-L44643 H-L44610
25.4 50.292 14.224 14.732 10.668 1.3 1.3 L44643 L44610 28500 34000 7300 10000 3.3 0.37 1.6 0.88 0.085 0.038 L44643 L44610
25.4 51.994 15.011 14.26 12.7 1 1.3 5710 07204 26000 27700 7500 10000 4.4 0.4 1.5 0.82 0.08 0.06 5710 07204
25.4 62 19.05 20.638 14.288 0.8 1.3 15101 15245 45000 54500 6000 8000 5.8 0.35 1.7 0.94 0.215 0.08 15101 15245
25.4 62 19.05 20.638 14.288 3.5 1.3 15100 15245 45000 54500 6000 8000 4.3 0.35 1.7 0.94 0.215 0.08 15100 15245
25.4 63.5 20.638 20.638 15.875 0.8 1.3 15101 15250 45000 54500 6000 8000 7.4 0.35 1.7 0.94 0.215 0.114 15101 15250
25.4 63.5 20.638 20.638 15.875 0.8 1.5 15101 15250X 45000 54500 6000 8000 7.4 0.35 1.7 0.94 0.215 0.114 15101 15250X
25.4 63.5 19.05 20.638 15.875 3.5 1.3 15100 15250 45000 54500 6000 8000 4.3 0.35 1.7 0.94 0.215 0.114 15100 15250
25.4 63.5 20.638 20.638 15.875 3.5 1.5 15100 15250X 45000 54500 6000 8000 5.8 0.35 1.7 0.94 0.215 0.114 15100 15250X
25.4 65.088 22.225 21.463 15.875 1.5 1.5 23100 23256 43000 45000 5600 8000 2.2 0.73 0.82 0.45 0.21 0.143 23100 23256
26.988 50.292 14.224 14.732 10.668 3.5 1.3 L44649 L44610 28500 34000 7300 10000 3.3 0.37 1.6 0.88 0.08 0.038 L44649 L44610
26.988 51.15 17.462 17.462 13.495 3.5 1.5 15580 15520 42500 49000 6700 9000 2.8 0.35 1.7 0.94 0.135 0.07 15580 15520
26.988 62 19.05 20.638 14.288 0.8 1.3 15106 15245 45000 54500 6000 8000 5.8 0.35 1.7 0.94 0.205 0.08 15106 15245
28.575 57.15 19.845 19.355 15.875 3.6 1.6 H-1988 H-1922 48800 57100 5800 8200 5.9 0.33 1.82 1 0.151 0.077 H-1988 H-1922
28.575 68.263 22.225 22.225 17.463 0.8 1.6 H-57174 H-57120 51000 61100 5000 7000 5.1 0.42 1.44 0.79 0.251 0.153 H-57174 H-57120
28.575 73.571 22.225 22.225 17.462 0.8 3.3 57172 57120 55000 65500 5200 7000 3.8 0.45 1.3 0.73 0.313 0.158 57172 57120
28.575 73.571 22.225 22.225 17.463 0.8 3.2 H-57172 H-57120 55000 65700 4600 6500 3.7 0.45 1.32 0.73 0.317 0.163 H-57172 H-57120
29.985 62 16.002 16.566 14.288 1.5 1.5 17118 17244 35000 36000 6300 8500 3.5 0.38 1.6 0.86 0.137 0.09 17118 17244
30 62 19.05 20.638 14.288 1.3 1.3 15117 15245 45000 54500 6000 8000 5.8 0.35 1.7 0.94 0.18 0.08 15117 15245
30 63.5 20.638 20.638 15.875 1.3 1.3 15117 15250 45000 54500 6000 8000 5.8 0.35 1.7 0.94 0.18 0.114 15117 15250
30 63.5 20.638 20.638 15.875 1.3 1.5 15117 15250X 45000 54500 6000 8000 5.8 0.35 1.7 0.94 0.18 0.114 15117 15250X
30 72.085 22.385 19.202 18.415 0.8 2.4 H-14118 H-14283 46100 55000 4900 6900 4.4 0.38 1.57 0.86 0.238 0.198 H-14118 H-14283
30.162 64.292 21.433 21.433 16.67 1.5 1.5 M86649 M86610 55000 72500 6000 8000 3.3 0.55 1.1 0.6 0.21 0.125 M86649 M86610
30.163 64.292 21.433 21.433 16.67 1.57 1.57 H-M86649 H-M86610 55200 70700 5300 7500 3.4 0.55 1.1 0.6 0.213 0.128 H-M86649 H-M86610
30.213 62 19.05 20.638 14.288 0.8 1.3 15120 15245 45000 54500 6000 8000 5.8 0.35 1.7 0.94 0.183 0.08 15120 15245
30.213 62 19.05 20.638 14.288 3.5 1.3 15118 15245 45000 54500 6000 8000 5.8 0.35 1.7 0.94 0.178 0.08 15118 15245
30.213 63.5 20.638 20.638 15.875 0.8 1.3 15120 15250X 45000 54500 6000 8000 7.4 0.35 1.7 0.94 0.183 0.114 15120 15250X
30.213 63.5 20.638 20.638 15.875 0.8 1.5 15120 15250 45000 54500 6000 8000 7.4 0.35 1.7 0.94 0.183 0.114 15120 15250
30.213 63.5 20.638 20.638 15.875 3.5 1.3 15118 15250X 45000 54500 6000 8000 7.4 0.35 1.7 0.94 0.178 0.114 15118 15250X
30.213 63.5 20.638 20.638 15.875 3.5 1.5 15118 15250 45000 54500 6000 8000 7.4 0.35 1.7 0.94 0.178 0.114 15118 15250
31.75 59.131 15.875 16.764 11.811 999 1.3 LM67048 LM67571 36500 43500 6000 8500 2.9 0.41 1.5 0.8 0.12 0.062 LM67048 LM67571
31.75 61.999 18.161 19.05 14.288 999 1.2 H-15123 H-15245 44600 50700 5400 7500 4.8 0.35 1.71 0.94 0.157 0.082 H-15123 H-15245
31.75 62 18.161 19.05 14.288 999 1.3 15123 15245 43500 51500 6000 8000 5 0.35 1.7 0.94 0.155 0.08 15123 15245
31.75 62 19.05 20.638 14.288 0.8 1.3 15126 15245 45000 54500 6000 8000 5.8 0.35 1.7 0.94 0.167 0.08 15126 15245
31.75 62 19.05 20.638 14.288 3.5 1.3 15125 15245 45000 54500 6000 8000 5.8 0.35 1.7 0.94 0.165 0.08 15125 15245
31.75 63.5 20.638 19.05 15.875 999 1.3 15123 15250 45000 54500 6000 8000 7.4 0.35 1.7 0.94 0.155 0.114 15123 15250
31.75 63.5 20.638 19.05 15.875 999 1.5 15123 15250X 45000 54500 6000 8000 7.4 0.35 1.7 0.94 0.155 0.114 15123 15250X
31.75 63.5 20.638 20.638 15.875 0.8 1.3 15126 15250 45000 54500 6000 8000 7.3 0.35 1.7 0.94 0.167 0.114 15126 15250
31.75 63.5 20.638 20.638 15.875 0.8 1.5 15126 15250X 45000 54500 6000 8000 7.3 0.35 1.7 0.94 0.167 0.114 15126 15250X
31.75 63.5 20.638 20.638 15.875 3.5 1.3 15125 15250 45000 54500 6000 8000 7.3 0.35 1.7 0.94 0.165 0.114 15125 15250
31.75 63.5 20.638 20.638 15.875 3.5 1.5 15125 15250X 45000 54500 6000 8000 7.3 0.35 1.7 0.94 0.165 0.114 15125 15250X
31.75 66.421 25.4 25.357 20.638 0.8 3.2 H-2580 H-2520 71400 85100 5000 7000 9.4 0.27 2.19 1.21 0.279 0.128 H-2580 H-2520
31.75 68.263 22.225 22.225 17.463 3.6 1.6 H-57175 H-57120 51000 61100 5000 7000 5.1 0.42 1.44 0.79 0.223 0.153 H-57175 H-57120
31.75 69.012 19.845 19.583 15.875 3.5 1.3 14125A 14276 44500 55000 5500 7500 4.3 0.38 1.6 0.87 0.22 0.135 14125A 14276
31.75 69.012 19.845 19.583 15.875 3.5 3.3 14125A 14274 44500 55000 5500 7500 4.3 0.38 1.6 0.87 0.22 0.13 14125A 14274
31.75 69.85 23.812 25.357 19.05 0.8 1.3 2580 2523 70000 84000 5600 7500 8.6 0.27 2.2 1.2 0.29 0.165 2580 2523
31.75 69.85 23.813 25.357 19.05 0.8 1.2 H-2580 H-2523 71400 85100 5000 7000 9.4 0.27 2.19 1.21 0.282 0.169 H-2580 H-2523
33.338 68.262 22.225 22.225 17.462 0.8 1.5 M88048 M88571 56500 71500 5600 7500 2.8 0.55 1.1 0.6 0.23 0.09 M88048 M88571
33.338 68.263 22.225 22.225 17.463 0.8 1.6 H-M88048 H-M88571 56100 71100 5000 7000 3 0.55 1.1 0.6 0.234 0.147 H-M88048 H-M88571
33.338 69.012 19.845 19.583 15.875 0.8 1.2 H-14131 H-14276 46100 55000 4900 6900 4.4 0.38 1.57 0.86 0.201 0.136 H-14131 H-14276
33.338 69.012 19.845 19.583 15.875 3.5 1.3 14130 14276 44500 55000 5500 7500 4.3 0.38 1.6 0.87 0.21 0.135 14130 14276
33.338 69.012 19.845 19.583 15.875 3.5 3.3 14130 14274 44500 55000 5500 7500 4.3 0.38 1.6 0.87 0.21 0.13 14130 14274
34.925 65.088 18.034 18.288 13.97 999 1.3 LM48548 LM48510 48500 59000 5600 7500 3.7 0.38 1.6 0.88 0.16 0.085 LM48548 LM48510
34.925 69.012 19.845 19.583 15.875 1.5 1.3 14137A 14276 44500 55000 5500 7500 4.3 0.38 1.6 0.87 0.19 0.135 14137A 14276
34.925 69.012 19.845 19.583 15.875 1.5 3.3 14137A 14274 44500 55000 5500 7500 4.3 0.38 1.6 0.87 0.19 0.13 14137A 14274
34.925 69.012 19.845 19.583 15.875 3.5 1.3 14138A 14276 44500 55000 5500 7500 4.3 0.38 1.6 0.87 0.189 0.135 14138A 14276
34.925 69.012 19.845 19.583 15.875 3.5 3.3 14138A 14274 44500 55000 5500 7500 4.3 0.38 1.6 0.87 0.189 0.13 14138A 14274
34.925 69.012 19.845 19.583 15.875 3.6 1.2 H-14138A H-14276 46100 55000 4900 6900 4.4 0.38 1.57 0.86 0.185 0.136 H-14138A H-14276
34.925 72.233 25.4 25.4 19.842 2.4 2.4 H-HM88649 H-HM88610 66900 87400 4700 6600 4.7 0.55 1.1 0.6 0.305 0.189 H-HM88649 H-HM88610
34.925 73.571 23.812 24.608 19.05 1.5 0.8 25877 25821 73000 88500 5200 7100 8.1 0.29 2.1 1.1 0.31 0.165 25877 25821
34.925 73.571 23.813 24.608 19.05 1.6 0.8 H-25877R H-25821 72200 87300 4600 6500 8.2 0.29 2.07 1.14 0.309 0.167 H-25877R H-25821
34.925 76.2 29.37 28.575 23.812 1.5 3.3 31594 31520 80000 96000 5000 6800 7.7 0.4 1.5 0.82 0.4 0.23 31594 31520
34.925 76.2 29.37 28.575 23.813 3.6 3.3 H-31593 H-31520 80900 97400 4500 6300 7.8 0.4 1.49 0.82 0.383 0.238 H-31593 H-31520
34.925 80.167 29.37 30.391 23.813 3.6 3.2 3379 3320 91000 106000 4200 5900 10.7 0.27 2.2 1.21 0.503 0.22 3379 3320
34.987 59.131 15.875 16.764 11.938 999 1.27 H-L68149 H-L68110 35700 48500 5300 7500 2.7 0.42 1.44 0.79 0.112 0.057 H-L68149 H-L68110
34.987 59.975 15.875 16.764 11.938 999 1.27 H-L68149 H-L68111 35700 48500 5300 7500 2.7 0.42 1.44 0.79 0.112 0.064 H-L68149 H-L68111
35 59.131 15.875 16.764 11.938 999 1.3 L68149 L68110 34000 46000 6000 8000 2.5 0.42 1.4 0.79 0.11 0.055 L68149 L68110
36.487 73.571 23.812 24.608 19.05 1.5 0.8 25880 25821 73000 88500 5200 7100 8.1 0.29 2.1 1.1 0.3 0.165 25880 25821
36.512 69.012 19.05 19.05 15.083 3.5 0.8 13682 13620 47000 60000 5300 7100 3 0.4 1.5 0.82 0.19 0.105 13682 13620
36.512 76.2 29.37 28.575 23.02 3.5 3.3 HM89449 HM89410 79500 108000 5000 6800 5.6 0.55 1.1 0.6 0.37 0.25 HM89449 HM89410
36.512 85.725 30.162 30.162 23.813 0.8 3.3 3878 3820 91000 115000 4300 6000 8.2 0.4 1.5 0.82 0.525 0.28 3878 3820
36.513 93.663 31.75 31.75 26.195 1.6 3.2 46143 46368 105000 134000 3600 5100 7.7 0.4 1.49 0.82 0.728 0.412 46143 46368
38 63 17 17 13.5 3.56 1.27 H-JL69349 H-JL69310 43500 58200 5000 7000 2.4 0.42 1.44 0.79 0.128 0.072 H-JL69349 H-JL69310
38.1 63.5 12.7 11.908 9.525 1.5 0.8 13889 13830 27200 34000 5400 7300 0.8 0.35 1.7 0.95 0.108 0.045 13889 13830
38.1 65.088 18.034 18.288 13.97 2.3 1.3 LM29749 LM29710 45000 60000 5400 7500 4.2 0.33 1.8 0.99 0.155 0.08 LM29749 LM29710
38.1 65.088 18.034 18.288 13.97 2.36 1.17 H-LM29749 H-LM29710 42900 56500 4900 6800 4.3 0.33 1.8 0.99 0.158 0.08 H-LM29749 H-LM29710
38.1 65.088 18.034 18.288 13.97 999 1.17 H-LM29748 H-LM29710 42900 56500 4900 6800 4.3 0.33 1.8 0.99 0.154 0.08 H-LM29748 H-LM29710
38.1 69.012 19.05 19.05 15.083 3.5 2.3 13685 13621 47000 60000 5300 7100 3 0.4 1.5 0.82 0.185 0.103 13685 13621
38.1 76.2 23.812 25.654 19.05 3.5 0.8 2788 2729 68000 81000 5000 6700 8 0.3 2 1.1 0.31 0.187 2788 2729
38.1 76.2 23.812 25.654 19.05 3.5 3.3 2788 2720 68000 81000 5000 6700 8 0.3 2 1.1 0.31 0.185 2788 2720
38.1 76.2 23.813 25.654 19.05 3.6 3.2 H-2788R H-2720 74100 92200 4500 6300 8.1 0.3 1.98 1.09 0.305 0.19 H-2788R H-2720
38.1 79.375 23.813 25.4 19.05 0.8 0.8 H-26878R. H-26822. 81100 105000 4200 5900 7.5 0.32 1.88 1.04 0.397 0.185 H-26878R. H-26822.
38.1 79.375 29.37 29.771 23.813 3.6 3.2 3490 3420 87400 105000 4300 6100 8.6 0.37 1.64 0.9 0.415 0.262 3490 3420
38.1 80.167 29.37 30.391 23.812 3.5 3.3 3381 3320 86000 106000 4800 6400 18.5 0.27 2.19 1.2 0.445 0.215 3381 3320
38.1 88.501 26.988 29.083 22.225 3.6 1.6 418 414 98100 112000 4000 5700 10.1 0.26 2.28 1.25 0.522 0.329 418 414
39.688 73.571 23.812 25.654 19.05 3.5 0.8 2789 2735X 68000 81000 5000 6700 8 0.3 2 1.1 0.29 0.17 2789 2735X
39.688 73.571 25.654 22.098 21.336 0.8 2.3 M257147 M257111 63000 81000 5000 6700 5.9 0.33 1.8 0.99 0.255 0.183 M257147 M257111
39.688 76.2 23.813 25.654 19.05 3.6 3.2 H-2789R H-2720 74100 92200 4500 6300 8.1 0.3 1.98 1.09 0.285 0.19 H-2789R H-2720
40.987 67.975 17.5 18 13.5 999 1.6 H-LM300849 H-LM300811 44000 59500 4600 6500 3.6 0.35 1.72 0.95 0.157 0.082 H-LM300849 H-LM300811
41.275 73.571 16.667 17.462 12.7 3.5 1.5 18590 18520 46500 57000 4800 6700 2.8 0.35 1.7 0.94 0.208 0.084 18590 18520
41.275 73.571 16.667 17.463 12.7 3.6 1.6 H-18590 H-18520 45900 55800 4300 6100 2.2 0.35 1.71 0.94 0.198 0.087 H-18590 H-18520
41.275 73.431 19.558 19.812 14.732 3.5 0.8 LM501349 LM501310 55500 69000 4900 6700 3.4 0.4 1.5 0.83 0.22 0.108 LM501349 LM501310
41.275 73.431 19.558 19.812 14.732 3.6 0.8 H-LM501349 H-LM501310 57800 73000 4400 6100 3.5 0.4 1.5 0.83 0.226 0.109 H-LM501349 H-LM501310
41.275 73.431 21.43 19.812 16.604 3.6 0.8 H-LM501349 H-LM501314 57800 73000 4400 6100 3.5 0.4 1.5 0.83 0.226 0.129 H-LM501349 H-LM501314
41.275 76.2 18.009 17.384 14.288 1.6 1.6 11162R 11300 51600 63300 4300 6000 0.5 0.49 1.23 0.68 0.219 0.13 11162R 11300
41.275 76.2 22.225 23.02 17.462 3.5 0.8 24780 24720 63500 78500 4800 6600 1.6 0.39 1.5 0.84 0.275 0.189 24780 24720
41.275 76.2 25.4 23.02 20.638 3.6 2.4 24780R 24721 66300 83300 4000 5600 4.8 0.39 1.53 0.84 0.271 0.191 24780R 24721
41.275 79.375 23.812 25.4 19.05 3.5 0.8 26882 26822 75000 94500 4700 6300 7.5 0.32 1.9 1 0.34 0.185 26882 26822
41.275 80.167 25.4 25.4 20.638 3.6 3.2 H-26882R. H-26820. 81100 105000 4200 5900 7.5 0.32 1.88 1.04 0.35 0.223 H-26882R. H-26820.
41.275 80.167 29.37 30.391 23.813 0.8 3.2 3384 3320 91000 106000 4200 5900 10.7 0.27 2.2 1.21 0.416 0.22 3384 3320
41.275 87.313 30.163 30.886 23.813 1.6 3.2 3585R 3525 95800 120000 3900 5400 9.7 0.31 1.96 1.08 0.527 0.308 3585R 3525
41.275 90.488 39.688 40.386 33.338 3.6 3.2 4388 4335 132000 169000 3800 5300 14.1 0.28 2.11 1.16 0.767 0.463 4388 4335
42.863 87.313 30.163 30.886 23.813 3.6 3.2 3579R 3525 95800 120000 3900 5400 9.7 0.31 1.96 1.08 0.499 0.308 3579R 3525
42.875 80 21 22.403 17.826 3.5 1.3 342S 332 69000 76000 4500 6300 6.2 0.27 2.2 1.2 0.295 0.145 342S 332
42.875 82.931 23.812 25.4 19.05 3.5 0.8 25577 25520 78500 98000 4500 6000 6.2 0.33 1.8 0.99 0.38 0.2 25577 25520
42.875 82.931 26.988 25.4 22.225 3.5 2.3 25577 25523 78500 98000 4500 6000 9.4 0.33 1.8 0.99 0.38 0.245 25577 25523
42.875 82.931 26.988 25.4 22.225 3.6 2.4 H-25577 H-25523 77300 100000 4000 5500 6.3 0.33 1.79 0.99 0.379 0.251 H-25577 H-25523
42.875 83.058 23.812 25.4 19.05 3.5 3.3 25577 25521 78500 98000 4500 6000 6.2 0.33 1.8 0.99 0.38 0.199 25577 25521
44.45 82.931 23.812 25.4 19.05 3.5 0.8 25580 25520 78500 98000 4500 6000 6.2 0.33 1.8 0.99 0.355 0.2 25580 25520
44.45 82.931 23.813 25.4 19.05 3.6 0.8 H-25580 H-25520 77300 100000 4000 5500 6.3 0.33 1.79 0.99 0.361 0.202 H-25580 H-25520
44.45 82.931 26.988 25.4 22.225 3.5 2.3 25580 25523 78500 98000 4500 6000 9.4 0.33 1.8 0.99 0.355 0.245 25580 25523
44.45 83.058 23.812 25.4 19.05 3.5 3.3 25580 25521 78500 98000 4500 6000 6.2 0.33 1.8 0.99 0.355 0.199 25580 25521
44.45 87.312 30.162 30.886 23.812 3.5 3.3 3578 3525 90000 110000 4300 6000 10.2 0.31 2 1.1 0.476 0.305 3578 3525
44.45 87.313 30.163 30.886 23.813 3.6 3.2 3578R 3525 95800 120000 3900 5400 9.7 0.31 1.96 1.08 0.473 0.308 3578R 3525
44.45 88.9 30.163 29.37 23.02 3.6 3.3 HM85719 HM85710 99600 125000 3800 5400 4.1 0.55 1.1 0.6 0.517 0.326 HM85719 HM85710
44.45 90.119 23 21.926 21.808 3.6 2.4 355X 352 71800 81700 3800 5400 5.1 0.31 1.96 1.08 0.336 0.325 355X 352
44.45 92.075 30.163 29.37 23.02 3.6 3.2 HM85719 HM85712 99600 125000 3800 5400 4.1 0.55 1.1 0.6 0.517 0.407 HM85719 HM85712
44.45 93.264 30.163 30.302 23.813 3.6 3.2 3782 3720 103000 137000 3500 4900 8 0.34 1.77 0.97 0.651 0.296 3782 3720
44.45 95.25 30.958 28.575 22.225 3.6 0.8 HM903249 HM903210 99700 120000 3700 5100 0.1 0.74 0.81 0.45 0.609 0.389 HM903249 HM903210
44.45 95.25 30.958 28.301 20.638 1.2 0.8 53176 53375 88700 98400 3700 5200 1 0.74 0.81 0.45 0.557 0.367 53176 53375
44.45 112.713 30.163 26.909 20.638 3.5 3.3 55175 55443 92000 108000 3100 4300 -7.1 0.88 0.68 0.37 0.82 0.5 55175 55443
44.45 114.3 44.45 44.45 34.925 3.6 3.2 65385 65320 189000 230000 3100 4400 12.5 0.43 1.39 0.77 1.466 0.884 65385 65320
44.983 93.264 30.163 30.302 23.813 3.6 3.2 3776 3720 103000 137000 3500 4900 8 0.34 1.77 0.97 0.642 0.296 3776 3720
45.242 73.431 19.558 19.812 15.748 3.5 0.8 LM157149 LM157110 55500 78000 4700 6400 4.7 0.31 2 1.1 0.208 0.1 LM157149 LM157110
45.242 73.431 19.558 19.812 15.748 3.6 0.8 H-LM157149 H-LM157110 55600 78100 4200 5900 4.9 0.31 1.97 1.08 0.207 0.101 H-LM157149 H-LM157110
45.242 77.788 19.842 19.842 15.08 3.6 0.8 LM603049 LM6571 57100 73500 4100 5700 2.3 0.43 1.41 0.77 0.242 0.122 LM603049 LM6571
45.242 77.788 21.43 19.842 16.667 3.6 0.8 LM603049 LM603012 57100 73500 4100 5700 2.3 0.43 1.41 0.77 0.241 0.141 LM603049 LM603012
45.618 82.931 23.812 25.4 19.05 3.5 0.8 25590 25520 78500 98000 4500 6000 6.2 0.33 1.8 0.99 0.34 0.2 25590 25520
45.618 82.931 23.813 25.4 19.05 3.6 0.8 H-25590 H-25520 77300 100000 4000 5500 6.3 0.33 1.79 0.99 0.345 0.202 H-25590 H-25520
45.618 82.931 26.988 25.4 22.225 3.5 2.3 25590 25523 78500 98000 4500 6000 6.2 0.33 1.8 0.99 0.34 0.245 25590 25523
45.618 82.931 26.988 25.4 22.225 3.6 2.4 H-25590 H-25523 77300 100000 4000 5500 6.3 0.33 1.79 0.99 0.341 0.251 H-25590 H-25523
46.038 79.375 17.463 17.463 13.495 2.8 1.6 H-25590 18620 47100 59100 4000 5600 1.5 0.37 1.6 0.88 0.206 0.126 H-25590 18620
46.038 85 20.638 21.692 17.462 2.3 1.3 359S 354A 69000 78000 4300 6000 4.9 0.31 2 1.1 0.33 0.16 359S 354A
47.625 93.264 30.163 30.302 23.813 3.6 3.2 3779 3720 103000 137000 3500 4900 8 0.34 1.77 0.97 0.596 0.296 3779 3720
47.625 101.6 34.925 36.068 26.988 3.5 3.3 528 522 139000 171000 3700 5000 12.7 0.29 2.1 1.2 0.89 0.41 528 522
47.625 107.95 36.513 36.957 28.575 3.6 3.2 536 532X 138000 172000 3200 4400 12.3 0.3 2.02 1.11 1.03 0.583 536 532X
47.625 111.125 30.162 26.909 20.638 3.5 3.3 55187 55437 92000 108000 3100 4300 -7.1 0.88 0.68 0.37 0.825 0.51 55187 55437
49.212 93.264 30.162 30.302 23.812 3.5 0.8 3781 3730 157100 134000 3800 5300 8.4 0.34 1.8 0.97 0.65 0.295 3781 3730
49.212 103.188 43.658 44.475 36.512 3.5 3.3 5395 5335 177000 245000 3700 5000 27.3 0.3 2 1.11 1.13 0.64 5395 5335
49.212 114.3 44.45 44.45 36.068 3.5 3.3 HH506348 HH5 0571 0 199000 243000 3500 4700 31.2 0.4 1.5 0.82 1.7 0.85 HH506348 HH5 0571 0
50 82 21.5 21.5 17 3 0.5 H-JLM104948 H-JLM104910 71700 97900 3800 5300 5.3 0.31 1.97 1.08 0.305 0.129 H-JLM104948 H-JLM104910
50.8 82 21.976 22.225 17 3.6 0.5 H-LM104949 H-JLM104910 61200 84300 3700 5200 5.2 0.31 1.97 1.08 0.288 0.129 H-LM104949 H-JLM104910
50.8 82.55 21.59 22.225 16.51 3.5 1.3 LM104949 LM104911 71000 96000 4300 5700 3.9 0.31 2 1.1 0.285 0.15 LM104949 LM104911
50.8 82.55 21.59 22.225 16.51 3.6 1.2 H-LM104949 H-LM104911 61200 84300 3700 5200 5.2 0.31 1.97 1.08 0.287 0.133 H-LM104949 H-LM104911
50.8 82.931 21.59 22.225 16.51 3.6 1.2 H-LM104949 H-LM104912 61200 84300 3700 5200 5.2 0.31 1.97 1.08 0.287 0.14 H-LM104949 H-LM104912
50.8 85 17.462 17.462 13.495 3.5 1.5 18790 18720 44000 58500 4000 5600 0.7 0.41 1.5 0.81 0.235 0.134 18790 18720
50.8 88.9 17.462 17.462 13.495 3.5 1.3 18790 18724 44000 58500 4000 5600 0.7 0.41 1.5 0.81 0.235 0.134 18790 18724
50.8 88.9 20.638 22.225 16.513 1.5 1.3 368 362A 74500 89000 4000 5600 4.2 0.32 1.9 1 0.345 0.165 368 362A
50.8 88.9 20.638 22.225 16.513 3.6 1.3 368A 362A 74300 87300 3700 5200 4.6 0.32 1.88 1.03 0.329 0.166 368A 362A
50.8 92.075 24.608 25.4 19.845 3.6 0.8 28580R.L 28521.L 84800 119000 3500 4900 4.7 0.38 1.59 0.88 0.455 0.247 28580R.L 28521.L
50.8 93.264 30.162 30.302 23.812 3.5 0.8 3780 3730 157100 134000 3800 5300 8.2 0.34 1.8 0.97 0.558 0.295 3780 3730
50.8 93.264 30.163 30.302 23.813 3.6 3.2 3780 3720 103000 137000 3500 4900 8 0.34 1.77 0.97 0.539 0.296 3780 3720
50.8 101.6 31.75 31.75 25.4 3.5 3.3 49585 49520 107000 128000 3600 5000 7.1 0.4 1.5 0.82 0.75 0.385 49585 49520
50.8 101.6 34.925 36.068 26.988 0.8 3.3 529 522 139000 169000 3700 5000 12.7 0.29 2.1 1.2 0.83 0.41 529 522
50.8 104.775 30.162 30.958 23.812 6.4 3.3 45284 45220 131000 171000 3500 4700 7.9 0.33 1.8 0.99 0.825 0.41 45284 45220
50.8 104.775 36.512 36.512 28.575 3.5 3.3 HM807046 HM85711 147000 257100 3500 4800 7.4 0.49 1.2 0.68 0.97 0.5 HM807046 HM85711
50.8 107.95 36.512 36.957 28.575 3.5 3.3 537 532X 139000 173000 3600 4800 11.7 0.3 2.02 1.1 0.97 0.57 537 532X
50.8 111.125 30.162 26.909 20.638 3.5 3.3 55200 55437 92000 108000 3100 4300 -7.1 0.88 0.68 0.37 0.77 0.51 55200 55437
50.8 122.238 38.1 36.678 30.162 2.3 3.3 555 553X 149000 197000 3000 4100 9.4 0.35 1.73 0.95 1.5 0.69 555 553X
50.8 123.825 36.512 32.791 25.4 3.5 3.3 72200 72487 135000 148000 2900 4100 -1.3 0.74 0.81 0.45 1.24 0.785 72200 72487
50.8 127 44.45 44.45 34.925 3.5 3.3 65200 65500 198000 258000 3100 4300 9.4 0.49 1.2 0.68 1.87 1.03 65200 65500
52.388 92.075 24.608 25.4 19.845 3.6 0.8 28584R. 28521 84800 119000 3500 4900 4.7 0.38 1.59 0.87 0.43 0.247 28584R. 28521
53.975 96.838 21.001 21.946 15.875 1.6 0.8 389AS 382A 80400 157100 3300 4600 3.6 0.35 1.69 0.93 0.475 0.179 389AS 382A
53.975 98.425 21 21.946 17.826 0.8 0.8 389A 382 74500 91500 3600 5000 3 0.35 1.7 0.93 0.38 0.225 389A 382
53.975 104.775 30.162 29.317 24.605 3.5 3.3 456 453X 116000 150000 3400 4800 7 0.34 1.8 0.98 0.74 0.375 456 453X
53.975 104.775 36.512 36.512 28.575 3.5 3.3 HM807049 HM85711 147000 257100 3500 4800 7.4 0.49 1.2 0.68 0.89 0.5 HM807049 HM85711
53.975 112.712 30.162 30.163 23.812 3.5 3.3 39578 39520 126000 168000 3100 4300 6.6 0.34 1.8 0.97 0.9 0.36 39578 39520
53.975 120.65 41.275 41.275 31.75 3.5 3.3 621 612 163000 198000 3300 4400 26.9 0.31 1.91 1.05 1.49 0.735 621 612
53.975 123.825 38.1 36.678 30.162 3.5 3.3 557S 552A 149000 197000 3000 4100 9.2 0.35 1.73 0.95 1.5 0.75 557S 552A
53.975 127 44.45 44.45 34.925 3.5 3.3 65212 65500 198000 258000 3100 4300 9.4 0.49 1.2 0.68 1.8 1.03 65212 65500
53.975 127 50.8 52.388 41.275 3.5 3.3 6280 6220 241000 300000 3100 4300 19.5 0.3 2 1.1 2.06 1.25 6280 6220
55 90 23 23 18.5 1.5 0.5 JLM506849E JLM506810E 81400 115000 3500 4900 2.9 0.4 1.49 0.82 0.377 0.184 JLM506849E JLM506810E
55.562 122.238 43.658 43.764 36.512 1.3 3.3 5566 5535 178000 263000 3000 4000 12.1 0.36 1.7 0.92 1.76 0.811 5566 5535
55.563 97.63 24.608 24.608 19.446 3.6 0.8 28680 28622 89600 131000 3300 4600 3.4 0.4 1.49 0.82 0.49 0.27 28680 28622
57.15 96.838 21.001 21.946 15.875 3.6 0.8 387A 382A 80400 157100 4200 5900 3.6 0.35 1.69 0.93 0.425 0.179 387A 382A
57.15 97.63 24.608 24.608 19.446 3.6 0.8 28682 28622 89600 131000 3300 4600 3.4 0.4 1.49 0.82 0.463 0.27 28682 28622
57.15 104.775 30.163 29.317 24.605 2.4 3.2 462 453X 109000 144000 3100 4300 6.6 0.34 1.79 0.98 0.678 0.382 462 453X
57.15 104.775 30.162 30.958 23.812 2.3 0.8 45290 45221 131000 171000 3500 4700 8 0.33 1.8 0.99 0.765 0.35 45290 45221
57.15 104.775 30.163 29.317 24.605 3.6 3.2 469 453X 109000 144000 3100 4300 6.6 0.34 1.79 0.98 0.678 0.382 469 453X
57.15 110 21.999 21.996 18.824 2.4 1.2 390 394A 86400 116000 2800 4000 0.7 0.4 1.49 0.82 0.677 0.262 390 394A
57.15 112.712 30.162 30.048 23.812 3.5 3.3 3979 3920 118000 172000 3200 4300 4.6 0.4 1.5 0.82 0.94 0.46 3979 3920
57.15 112.713 30.163 30.163 23.813 7.9 3.2 39581 39520 147000 207000 2800 3900 6.9 0.34 1.77 0.97 1.03 0.363 39581 39520
57.15 117.475 30.162 30.162 23.812 3.5 3.3 33225 33462 112000 168000 3000 4000 2.4 0.44 1.4 0.76 1.05 0.44 33225 33462
57.15 117.475 33.338 31.75 23.812 3.5 3.3 66225 66462 118000 132000 3100 4100 -0.1 0.63 0.95 0.52 0.97 0.54 66225 66462
57.15 122.238 38.1 36.678 30.162 3.5 3.3 555S 553X 149000 197000 3000 4100 9.4 0.35 1.7 0.95 1.45 0.69 555S 553X
57.15 127 44.45 44.45 34.925 3.5 3.3 65225 65500 198000 258000 3100 4200 9.3 0.49 1.2 0.68 1.75 1.03 65225 65500
57.15 136.525 41.275 41.275 31.75 3.5 3.3 635 632 183000 246000 2800 3800 11.2 0.36 1.7 0.91 2.02 1.01 635 632
57.15 149.225 53.975 54.229 44.45 3.5 3.3 6455 6420 284000 410000 2500 3400 15.1 0.36 1.7 0.91 3.45 1.65 6455 6420
58.738 112.712 30.162 30.048 23.812 3.5 3.3 3981 3920 118000 172000 3200 4300 4.5 0.4 1.5 0.82 0.89 0.46 3981 3920
58.738 127 44.45 44.45 34.925 3.5 3.3 65231 65500 198000 258000 3100 4200 9.3 0.49 1.2 0.68 1.71 1.03 65231 65500
59.987 134.983 33.449 30.925 21.948 3.6 3.6 HM911244R HM911216 153000 181000 2600 3700 -7.1 0.82 0.73 0.4 1.35 0.823 HM911244R HM911216
60.325 100 25.4 25.4 19.845 3.6 3.2 28985 28921 91400 137000 3100 4300 2.6 0.43 1.41 0.78 0.527 0.237 28985 28921
60.325 101.6 25.4 25.4 19.845 3.6 3.2 28985 28920 91400 137000 3100 4300 2.6 0.43 1.41 0.78 0.526 0.276 28985 28920
60.325 112.713 30.162 30.048 23.812 3.5 0.8 3980 3925 118000 172000 3200 4300 4.5 0.4 1.5 0.82 0.9 0.45 3980 3925
60.325 122.238 38.1 38.354 29.718 8 1.5 HM212044 HM212571 187000 243000 3000 4100 10.9 0.34 1.8 0.98 1.45 0.6 HM212044 HM212571

 

  NO 6. Our Bearing Factory:

NO 8. Our Bearing Warehouse:

NO 9. Our Bearing Packaging Box:

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Why Choose Us:

l SFNB bearing company has 14 years manufacture experience and is one of the biggest adjustment center in north of China.
 
l We have large stock of original brand and our own brand bearing.
 
l Sample is available.
 
l We can accept OEM service.
 
l SFNB Bearing Co., Ltd. Was founded in March 2008. We were principally engaged in the research, development and manufacture of bearings in the early stage. Now we are mainly engaged in the sales of internationally-famous brand bearings. Our products are sold in Britain, America, Japan, Italy and Southeast Asia, well appreciated by their purchasers.  /* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

Rolling Body: Roller Bearings
The Number of Rows: Single
Outer Dimension: Small and Medium-Sized (60-115mm)
Material: Bearing Steel
Spherical: Non-Aligning Bearings
Load Direction: Radial Bearing
Customization:
Available

|

Customized Request

ball bearing

How does Preload Affect the Performance and Efficiency of Ball Bearings?

Preload is a crucial factor in ball bearing design that significantly impacts the performance, efficiency, and overall behavior of the bearings in various applications. Preload refers to the intentional axial force applied to the bearing’s rolling elements before it is mounted. This force eliminates internal clearance and creates contact between the rolling elements and the raceways. Here’s how preload affects ball bearing performance:

  • Reduction of Internal Clearance:

Applying preload reduces the internal clearance between the rolling elements and the raceways. This eliminates play within the bearing, ensuring that the rolling elements are in constant contact with the raceways. This reduced internal clearance enhances precision and reduces vibrations during operation.

  • Increased Stiffness:

Preloaded bearings are stiffer due to the elimination of internal clearance. This increased stiffness improves the bearing’s ability to handle axial and radial loads with higher accuracy and minimal deflection.

  • Minimized Axial Play:

Preload minimizes or eliminates axial play within the bearing. This is especially important in applications where axial movement needs to be minimized, such as machine tool spindles and precision instruments.

  • Enhanced Rigidity:

The stiffness resulting from preload enhances the bearing’s rigidity, making it less susceptible to deformation under load. This is critical for maintaining precision and accuracy in applications that require minimal deflection.

  • Reduction in Ball Slippage:

Preload reduces the likelihood of ball slippage within the bearing, ensuring consistent contact between the rolling elements and the raceways. This leads to improved efficiency and better load distribution.

  • Improved Running Accuracy:

Preloading enhances the running accuracy of the bearing, ensuring that it maintains precise rotational characteristics even under varying loads and speeds. This is essential for applications requiring high accuracy and repeatability.

  • Optimized Performance at High Speeds:

Preload helps prevent skidding and slipping of the rolling elements during high-speed operation. This ensures that the bearing remains stable, reducing the risk of noise, vibration, and premature wear.

  • Impact on Friction and Heat Generation:

While preload reduces internal clearance and friction, excessive preload can lead to higher friction and increased heat generation. A balance must be struck between optimal preload and minimizing friction-related issues.

  • Application-Specific Considerations:

The appropriate amount of preload depends on the application’s requirements, such as load, speed, accuracy, and operating conditions. Over-preloading can lead to increased stress and premature bearing failure, while under-preloading may result in inadequate rigidity and reduced performance.

Overall, preload plays a critical role in optimizing the performance, accuracy, and efficiency of ball bearings. Engineers must carefully determine the right preload level for their specific applications to achieve the desired performance characteristics and avoid potential issues related to overloading or inadequate rigidity.

ball bearing

What are the Differences between Deep Groove Ball Bearings and Angular Contact Ball Bearings?

Deep groove ball bearings and angular contact ball bearings are two common types of ball bearings, each designed for specific applications and load conditions. Here are the key differences between these two types of bearings:

  • Design and Geometry:

Deep Groove Ball Bearings:

Deep groove ball bearings have a simple design with a single row of balls that run along deep raceways in both the inner and outer rings. The rings are usually symmetrical and non-separable, resulting in a balanced load distribution.

Angular Contact Ball Bearings:

Angular contact ball bearings have a more complex design with two rows of balls, oriented at an angle to the bearing’s axis. This arrangement allows for the transmission of both radial and axial loads, making them suitable for combined loads and applications requiring high precision.

  • Load Carrying Capacity:

Deep Groove Ball Bearings:

Deep groove ball bearings are primarily designed to carry radial loads. They can handle axial loads in both directions, but their axial load-carrying capacity is generally lower compared to angular contact ball bearings.

Angular Contact Ball Bearings:

Angular contact ball bearings are specifically designed to handle both radial and axial loads. The contact angle between the rows of balls determines the bearings’ axial load-carrying capacity. They can handle higher axial loads and are commonly used in applications with thrust loads.

  • Contact Angle:

Deep Groove Ball Bearings:

Deep groove ball bearings have no defined contact angle, as the balls move in a deep groove along the raceways. They are primarily designed for radial loads.

Angular Contact Ball Bearings:

Angular contact ball bearings have a specified contact angle between the rows of balls. This contact angle allows them to carry both radial and axial loads and is crucial for their ability to handle combined loads.

  • Applications:

Deep Groove Ball Bearings:

Deep groove ball bearings are commonly used in applications that primarily require radial loads, such as electric motors, pumps, and conveyor systems. They are also suitable for high-speed operation.

Angular Contact Ball Bearings:

Angular contact ball bearings are used in applications where both radial and axial loads are present, such as in machine tools, automotive wheel hubs, and aerospace components. They are especially useful for applications that require precise axial positioning and handling of thrust loads.

  • Limitations:

Deep Groove Ball Bearings:

Deep groove ball bearings are not as suitable for handling significant axial loads and may experience skidding under certain conditions due to their deep raceways.

Angular Contact Ball Bearings:

Angular contact ball bearings can experience increased heat generation and wear at higher speeds due to the contact angle of the balls.

In summary, the design, load-carrying capacity, contact angle, and applications differ between deep groove ball bearings and angular contact ball bearings. Choosing the appropriate type depends on the specific load conditions and requirements of the application.

ball bearing

How does Lubrication Impact the Performance and Lifespan of Ball Bearings?

Lubrication plays a critical role in the performance and lifespan of ball bearings. Proper lubrication ensures smooth operation, reduces friction, minimizes wear, and prevents premature failure. Here’s how lubrication impacts ball bearings:

  • Friction Reduction:

Lubrication creates a thin film between the rolling elements (balls) and the raceways of the bearing. This film reduces friction by separating the surfaces and preventing direct metal-to-metal contact. Reduced friction results in lower energy consumption, heat generation, and wear.

  • Wear Prevention:

Lubricants create a protective barrier that prevents wear and damage to the bearing’s components. Without proper lubrication, the repeated rolling and sliding of the balls against the raceways would lead to accelerated wear, surface pitting, and eventual failure.

  • Heat Dissipation:

Lubricants help dissipate heat generated during operation. The rolling elements and raceways can generate heat due to friction. Adequate lubrication carries away this heat, preventing overheating and maintaining stable operating temperatures.

  • Corrosion Resistance:

Lubrication prevents moisture and contaminants from coming into direct contact with the bearing’s surfaces. This helps protect the bearing against corrosion, rust, and the formation of debris that can compromise its performance and longevity.

  • Noise Reduction:

Lubricated ball bearings operate quietly because the lubricant cushions and dampens vibrations caused by the rolling motion. This noise reduction is crucial in applications where noise levels need to be minimized.

  • Seal Protection:

Lubricants help maintain the effectiveness of seals or shields that protect the bearing from contaminants. They create a barrier that prevents particles from entering the bearing and causing damage.

  • Improved Efficiency:

Properly lubricated ball bearings operate with reduced friction, leading to improved overall efficiency. This is especially important in applications where energy efficiency is a priority.

  • Lifespan Extension:

Effective lubrication significantly extends the lifespan of ball bearings. Bearings that are properly lubricated experience less wear, reduced fatigue, and a lower likelihood of premature failure.

  • Selection of Lubricant:

Choosing the right lubricant is essential. Factors such as speed, temperature, load, and environmental conditions influence the choice of lubricant type and viscosity. Some common lubricant options include grease and oil-based lubricants.

  • Regular Maintenance:

Regular lubrication maintenance is crucial to ensure optimal bearing performance. Bearings should be inspected and relubricated according to manufacturer recommendations and based on the application’s operating conditions.

In summary, proper lubrication is essential for the optimal performance, longevity, and reliability of ball bearings. It reduces friction, prevents wear, dissipates heat, protects against corrosion, and contributes to smooth and efficient operation in various industrial and mechanical applications.

China best CZPT CZPT Ball and Roller Bearing Lm11749/10 Tapered Roller Bearings   wheel bearingChina best CZPT CZPT Ball and Roller Bearing Lm11749/10 Tapered Roller Bearings   wheel bearing
editor by CX 2024-01-11

China wholesaler CZPT CZPT CZPT CZPT CZPT Original Brand Bearing Tapered Roller Bearing Deep Groove Ball Bearing Wheel Hub Bearing Cylindrical Roller Bearing for Auto Parts supplier

Product Description

hub bearing automotive wheel bearing for front rear car wheel

Product Description

 

   
Name good quality wheel bearing
Brand  WNTN/support OEM brand
Material Chrome steel Gcr15, stainless steel
Precision rating ABEC-1 ABEC-3 ABEC-5 
Noisy Z1,Z2,Z3
Vibration V1,V2,V3
Number of row Single
payment terms T/T
quality strictly checked before sending out
features 1. High quality  
2. Competitive price 
3.Less friction and low noise 
4.durable
package 1.Plastic Tube/30

37.99

71

33

30

DAC38100700037

38.1

70

37

37

DAC38700037

38

70

37

37

DAC38700038

38

70

38

38

DAC38700038B

38

70

38

38

DAC/30

37.99

71.02

33

30

DAC38725716/33B

38

72.02

36

33

DAC38720040

38

72

40

40

DAC37990725716/33

37.99

72.02

36

33

DAC38730040

38

73

40

40

DAC37990740036/33

37.99

74

36

33

DAC/33

37.99

74.02

36

33

DAC/33B

37.99

74.02

36

33

DAC38740050

38

74

50

50

DAC38740450

38

74.04

50

50

DAC39680037

39

68

37

37

 

 

 

Packaging & Shipping

 

 

FAQ

 F&Q

Q:What the MQQ of your company?
A:MQQ is 1pcs.

Q:Could you accept OEM and customize?
A:YES,we can customize for you according to sample or drawing.

 

Q:Could you supply sample for free?
A:Yes,we can supply sample for free,do you mind to buy her a ticket?

 

Q:Dose your factory have any certificate?
A:yes.we have ISO 9001:2008,IQNET and SGS. If you want other like CE,we can do for you.

 

Q:IS you company factory or Trade Company?
A:We have our own factory ;our type is factory +trade.

 

Q:Could you tell me the material of our bearing?
A:We have chrome steel,and staninless steel,ceramic and plastic material.

 

Q:Could you offer door to door service?
A:Yes,by express(GHL,FEDEX,TNT,EMS,4-10 days to your city.)

 

Q:Coould you tell me the payment term of your company can accept?
A:T/T.Western Union,PayPal

 

Q:Could you tell me the delivery timr of your doods?
A:If stock,in 7days or base on your order quantity

Why Chose Us

Why Chose Us ?

1.Excellent and high quality control,high speed,low noise,long life
2.Best service
3.Prompt delivery
4.Competitive price
5.Small order accepted
6.Customers’ drawing or samples accepted
7.OEM service
8.ISO Standard

After-sales Service: 24 Hours Online
Warranty: One Year
Type: Wheel Hub Bearing

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Shipping Cost:

Estimated freight per unit.







about shipping cost and estimated delivery time.
Payment Method:







 

Initial Payment



Full Payment
Currency: US$
Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

ball bearing

What are the Materials Typically Used in Manufacturing Ball Bearings and Their Advantages?

Ball bearings are manufactured using a variety of materials, each chosen for its specific properties and advantages in various applications. Here are some commonly used materials in ball bearing manufacturing and their respective benefits:

  • High-Carbon Chrome Steel (AISI 52100):

This is the most common material used for ball bearing manufacturing. It offers excellent hardness, wear resistance, and fatigue strength. High-carbon chrome steel bearings are suitable for a wide range of applications, from industrial machinery to automotive components.

  • Stainless Steel (AISI 440C, AISI 304, AISI 316):

Stainless steel bearings are corrosion-resistant and suitable for applications where moisture, chemicals, or exposure to harsh environments are concerns. AISI 440C offers high hardness and corrosion resistance, while AISI 304 and AISI 316 provide good corrosion resistance and are often used in food and medical industries.

  • Ceramic:

Ceramic bearings use silicon nitride (Si3N4) or zirconia (ZrO2) balls. Ceramic materials offer high stiffness, low density, and excellent resistance to corrosion and heat. Ceramic bearings are commonly used in high-speed and high-temperature applications, such as in aerospace and racing industries.

  • Plastic (Polyamide, PEEK):

Plastic bearings are lightweight and offer good corrosion resistance. Polyamide bearings are commonly used due to their low friction and wear properties. Polyether ether ketone (PEEK) bearings provide high-temperature resistance and are suitable for demanding environments.

  • Bronze:

Bronze bearings are often used in applications where self-lubrication is required. Bronze has good thermal conductivity and wear resistance. Bearings made from bronze are commonly used in machinery requiring frequent starts and stops.

  • Hybrid Bearings:

Hybrid bearings combine steel rings with ceramic balls. These bearings offer a balance between the advantages of both materials, such as improved stiffness and reduced weight. Hybrid bearings are used in applications where high speeds and low friction are essential.

  • Specialty Alloys:

For specific applications, specialty alloys may be used to meet unique requirements. For example, bearings used in extreme temperatures or corrosive environments may be made from materials like titanium or hastelloy.

  • Coated Bearings:

Bearings may also be coated with thin layers of materials like diamond-like carbon (DLC) or other coatings to enhance performance, reduce friction, and improve wear resistance.

The choice of material depends on factors such as application requirements, operating conditions, load, speed, and environmental factors. Selecting the right material is essential for ensuring optimal bearing performance, longevity, and reliability in diverse industries and applications.

ball bearing

Are there any Industry Standards or Certifications that Ball Bearings should Meet?

Yes, there are several industry standards and certifications that ball bearings should meet to ensure their quality, performance, and reliability. These standards help manufacturers, engineers, and customers assess the suitability of bearings for specific applications. Some of the key standards and certifications for ball bearings include:

  • ISO Standards:

The International Organization for Standardization (ISO) has developed a series of standards related to ball bearings. ISO 15 defines dimensions, boundary dimensions, and tolerances for radial bearings. ISO 281 specifies dynamic load ratings and calculation methods for bearings’ life calculations.

  • ABEC (Annular Bearing Engineering Committee) Ratings:

ABEC ratings are commonly used in North America to indicate the precision and performance of ball bearings. Ratings range from ABEC 1 (lowest precision) to ABEC 9 (highest precision). However, it’s important to note that ABEC ratings focus primarily on dimensional tolerances and do not encompass all aspects of bearing quality.

  • DIN Standards:

The German Institute for Standardization (Deutsches Institut für Normung, DIN) has published various standards related to ball bearings. DIN 625 covers dimensions for deep groove ball bearings, while DIN 616 provides guidelines for precision angular contact ball bearings.

  • JIS (Japanese Industrial Standards):

JIS standards are used in Japan and internationally to define the characteristics and dimensions of various products, including ball bearings. JIS B 1512 outlines the classification and dimensions of rolling bearings.

  • ASTM (American Society for Testing and Materials) Standards:

ASTM has standards that cover various aspects of bearing testing, performance, and materials. ASTM F2215, for instance, specifies the requirements for ball bearings used in surgical implants.

  • CE Marking:

CE marking indicates that a product complies with European Union health, safety, and environmental requirements. It may be required for bearings used in machinery intended to be sold within the EU market.

  • Industry-Specific Standards:

Various industries, such as aerospace, automotive, medical, and nuclear, have specific standards or certifications that bearings must meet to ensure safety, reliability, and compliance with industry-specific requirements.

  • Quality Management Systems:

Manufacturers that adhere to quality management systems, such as ISO 9001, demonstrate their commitment to consistent product quality and customer satisfaction. Certification to these systems indicates that the manufacturing process follows established protocols and best practices.

When selecting ball bearings, it’s important to consider the relevant standards and certifications that align with the application’s requirements. This ensures that the bearings meet recognized quality and performance criteria, ultimately contributing to reliable and efficient operation.

ball bearing

What are the Primary Benefits of Using Ball Bearings in Machinery and Equipment?

Ball bearings offer several primary benefits when used in machinery and equipment. Their design and functionality provide advantages that contribute to the efficient and reliable operation of various applications. Here are the key benefits:

  • Reduced Friction:

One of the primary benefits of ball bearings is their ability to minimize friction between moving parts. The rolling motion of the balls reduces the contact area and sliding friction, leading to smoother operation and less energy loss due to frictional heating.

  • Efficient Load Support:

Ball bearings are engineered to support both radial and axial loads, making them versatile for applications with multidirectional forces. This load-bearing capability allows machinery to handle different types of loads while maintaining performance and stability.

  • Smooth Rotation:

Ball bearings enable smooth and precise rotational movement. The rolling motion of the balls provides consistent motion with minimal resistance, ensuring that machinery operates smoothly and without jerks.

  • High-Speed Capability:

Due to their low friction and efficient rolling action, ball bearings are suitable for high-speed applications. They allow machinery and equipment to achieve and maintain high rotational speeds without excessive wear or heat buildup.

  • Reduced Wear and Maintenance:

The reduced friction in ball bearings leads to lower wear on components. This results in longer service intervals and reduced maintenance requirements, saving both time and maintenance costs.

  • Energy Efficiency:

By minimizing friction and reducing energy losses, ball bearings contribute to the overall energy efficiency of machinery. This is particularly important in applications where energy consumption is a concern.

  • Versatility:

Ball bearings come in various types, sizes, and configurations, allowing them to be used in a wide range of machinery and equipment. They can be customized to suit specific application requirements.

  • Reliability and Longevity:

Ball bearings are designed to withstand heavy loads and harsh operating conditions. Their durability and resistance to wear ensure reliable performance and an extended operational life.

  • Quiet Operation:

Ball bearings contribute to quiet machinery operation due to the smooth rolling motion of the balls. This is particularly important in applications where noise reduction is a consideration.

In summary, the primary benefits of using ball bearings in machinery and equipment include reduced friction, efficient load support, smooth rotation, high-speed capability, reduced wear and maintenance, energy efficiency, versatility, reliability, and quiet operation. These benefits collectively enhance the performance and longevity of machinery across various industries.

China wholesaler CZPT CZPT CZPT CZPT CZPT Original Brand Bearing Tapered Roller Bearing Deep Groove Ball Bearing Wheel Hub Bearing Cylindrical Roller Bearing for Auto Parts   supplierChina wholesaler CZPT CZPT CZPT CZPT CZPT Original Brand Bearing Tapered Roller Bearing Deep Groove Ball Bearing Wheel Hub Bearing Cylindrical Roller Bearing for Auto Parts   supplier
editor by CX 2023-11-07

China OEM China Wholesale 1688 Motorcycle Bicycle Parts Roller Wheel Bearing Ball 6201-2RS 6301-2RS Deep Groove Ball Bearings with Hot selling

Product Description

Deep groove bearing:

 

Deep groove bearing:

Products name

Deep groove bearing 

Brand name

SUHUA

Series

Material

 Stainless steel or Gcr15

Quality

standard

 ISO9001, ABEC-1(Z1V1)

Service

 Original service

Tolerance

Grades

 ABEC-1 (P0), ABEC-3 (P6),ABEC-5(P5)

Noise Level

 EMQ V1 Z2, EMQ V2 Z3, EMQ V3 Z4, EMQ V4

Sealing/Shield

 Open, Z, ZZ,RS, 2RS,RZ,2RZ

Product

Advantage

A: SUHUA bearing moves very Fast & Quiet, with very smooth hand feeling

B: High precision, long life, low noise
C: high-end technology

D: good aftersales service

Package

A: tube package+outer carton+pallets

B: single box+outer carton+pallet

C: tube package+middle box+outer carton+pallets

D: According to your’s requirement

Application

Fan, Bike, Auto, Textile machine, Pump, Agricultural machinery, Machine tool, Motorcycle, washing machine, etc

 

other range

1) 6000 series:

604.605.606.607.608.609.6000.6001.6002.6003.6004.6005.6006.6007.6008.6009.6571.6011.6012

2) 6200 series:

624.625.626.627.628.629.6200.6201.6202.6203.6204.6205.6206.6207.6208.6209.6210.6211.6212

3) 6300 series:

634.635.636.637.638.639.6300.6301.6302.6303.6304.6305.6306.6307.6308.6309.6310.6311.6312

4) 6400 series:

6403.6404.6405.6406.6407.6408.6409.6410.6411.6412.6413.6414.6415.6416.6417.6418.6419.6420

5) 6700 series:

673.674.675.676.677.678.679.6700.6701.6702.6703.6704.6705

6) 6800 series:

685.686.687.688.689.6800.6801.6802.6803.6804.6805.6806.6807.6808.6809.6810.6811.6812

7) 6900 series:

695.696.697.698.699.6900.6901.6902.6903.6904.6905.6906.6907.6908.6909.6910.6911.6912

8)16000 series:

16001.16002.16003.16004.16005.16006.16007.16008.16009.16571.16011.16012.16013.16014.1

FAQ
 

1. Q: Can you provide a free sample?
    Yes, we can offer you a free sample when we have them in stock and you need to pay the shipping fee.

2. Q: What are the terms of payment?
    T/T, Trade Assurance order on Alibaba, Western Union, or Cash.

3. Q: What certification do you have?
    ISO 9001, IATF 16949, ROHS, SGS, BV.

4. Q: What is the lead time?
    Balls in stock could be delivered within 3-5 days once confirmed the order.

    UMass orders or customized products take about 20-30 days.

5. Q: What’s your advantage? Why did we choose you?

   1) More than 30 years of ball manufacturing experience.
   2) Great production capacity and Sustainable Supply. According to customer requirements. We support customized products including packages.
   3) Large stock and wide size range.

 

Shipping Cost:

Estimated freight per unit.



To be negotiated
Contact Angle: 45°
Aligning: Aligning Bearing
Separated: Separated
Samples:
US$ 0/Piece
1 Piece(Min.Order)

|

Order Sample

Customization:
ball bearing

What are the Materials Typically Used in Manufacturing Ball Bearings and Their Advantages?

Ball bearings are manufactured using a variety of materials, each chosen for its specific properties and advantages in various applications. Here are some commonly used materials in ball bearing manufacturing and their respective benefits:

  • High-Carbon Chrome Steel (AISI 52100):

This is the most common material used for ball bearing manufacturing. It offers excellent hardness, wear resistance, and fatigue strength. High-carbon chrome steel bearings are suitable for a wide range of applications, from industrial machinery to automotive components.

  • Stainless Steel (AISI 440C, AISI 304, AISI 316):

Stainless steel bearings are corrosion-resistant and suitable for applications where moisture, chemicals, or exposure to harsh environments are concerns. AISI 440C offers high hardness and corrosion resistance, while AISI 304 and AISI 316 provide good corrosion resistance and are often used in food and medical industries.

  • Ceramic:

Ceramic bearings use silicon nitride (Si3N4) or zirconia (ZrO2) balls. Ceramic materials offer high stiffness, low density, and excellent resistance to corrosion and heat. Ceramic bearings are commonly used in high-speed and high-temperature applications, such as in aerospace and racing industries.

  • Plastic (Polyamide, PEEK):

Plastic bearings are lightweight and offer good corrosion resistance. Polyamide bearings are commonly used due to their low friction and wear properties. Polyether ether ketone (PEEK) bearings provide high-temperature resistance and are suitable for demanding environments.

  • Bronze:

Bronze bearings are often used in applications where self-lubrication is required. Bronze has good thermal conductivity and wear resistance. Bearings made from bronze are commonly used in machinery requiring frequent starts and stops.

  • Hybrid Bearings:

Hybrid bearings combine steel rings with ceramic balls. These bearings offer a balance between the advantages of both materials, such as improved stiffness and reduced weight. Hybrid bearings are used in applications where high speeds and low friction are essential.

  • Specialty Alloys:

For specific applications, specialty alloys may be used to meet unique requirements. For example, bearings used in extreme temperatures or corrosive environments may be made from materials like titanium or hastelloy.

  • Coated Bearings:

Bearings may also be coated with thin layers of materials like diamond-like carbon (DLC) or other coatings to enhance performance, reduce friction, and improve wear resistance.

The choice of material depends on factors such as application requirements, operating conditions, load, speed, and environmental factors. Selecting the right material is essential for ensuring optimal bearing performance, longevity, and reliability in diverse industries and applications.

Available

|

Customized Request
ball bearing

How do Miniature Ball Bearings Differ from Standard-sized Ones, and Where are They Commonly Used?

Miniature ball bearings, as the name suggests, are smaller in size compared to standard-sized ball bearings. They have distinct characteristics and are designed to meet the unique requirements of applications that demand compactness, precision, and efficient rotation in confined spaces. Here’s how miniature ball bearings differ from standard-sized ones and where they are commonly used:

  • Size:

The most noticeable difference is their size. Miniature ball bearings typically have outer diameters ranging from a few millimeters to around 30 millimeters, while standard-sized ball bearings have larger dimensions suitable for heavier loads and higher speeds.

  • Load Capacity:

Due to their smaller size, miniature ball bearings have lower load-carrying capacities compared to standard-sized bearings. They are designed for light to moderate loads and are often used in applications where precision and compactness are prioritized over heavy load support.

  • Precision:

Miniature ball bearings are known for their high precision and accuracy. They are manufactured to tighter tolerances, making them suitable for applications requiring precise motion control and low levels of vibration.

  • Speed:

Miniature ball bearings can achieve higher speeds than standard-sized bearings due to their smaller size and lower mass. This makes them ideal for applications involving high-speed rotation.

  • Friction and Efficiency:

Miniature ball bearings generally have lower friction due to their smaller contact area. This contributes to higher efficiency and reduced heat generation in applications that require smooth and efficient motion.

  • Applications:

Miniature ball bearings find applications in various industries and sectors:

  • Electronics and Consumer Devices:

They are used in small motors, computer disk drives, printers, and miniature fans, where space is limited but precise motion is essential.

  • Medical and Dental Equipment:

Miniature bearings are used in medical devices such as surgical instruments, dental handpieces, and diagnostic equipment due to their precision and compactness.

  • Robotics and Automation:

Miniature ball bearings are integral to robotic arms, miniature conveyors, and automation systems, enabling precise movement in confined spaces.

  • Aerospace and Defense:

They are used in applications like UAVs (drones), aerospace actuators, and satellite components where size and weight constraints are critical.

  • Optics and Instrumentation:

Miniature bearings play a role in optical instruments, cameras, and measuring devices, providing smooth rotation and accurate positioning.

Overall, miniature ball bearings are specialized components designed for applications where space, precision, and efficient rotation are paramount. Their compactness and high precision make them crucial in various industries requiring reliable motion control in limited spaces.

ball bearing

What Factors should be Considered when Selecting a Ball Bearing for a Particular Application?

Selecting the right ball bearing for a specific application involves careful consideration of various factors to ensure optimal performance, longevity, and reliability. Here are the key factors that should be taken into account:

  • Load Type and Magnitude:

Determine the type of load (radial, axial, or combined) and the magnitude of the load that the bearing will need to support. Choose a bearing with the appropriate load-carrying capacity to ensure reliable operation.

  • Speed and Operating Conditions:

Consider the rotational speed of the application and the operating conditions, such as temperature, humidity, and exposure to contaminants. Different bearing types and materials are suited for varying speeds and environments.

  • Accuracy and Precision:

For applications requiring high accuracy and precision, such as machine tool spindles or optical instruments, choose high-precision bearings that can maintain tight tolerances and minimize runout.

  • Space Limitations:

If the application has limited space, choose miniature or compact ball bearings that can fit within the available dimensions without compromising performance.

  • Thrust and Radial Loads:

Determine whether the application requires predominantly thrust or radial load support. Choose the appropriate type of ball bearing (thrust, radial, or angular contact) based on the primary load direction.

  • Alignment and Misalignment:

If the application experiences misalignment between the shaft and housing, consider self-aligning ball bearings that can accommodate angular misalignment.

  • Mounting and Installation:

Consider the ease of mounting and dismounting the bearing. Some applications may benefit from features like flanges or snap rings for secure installation.

  • Lubrication and Maintenance:

Choose a bearing with appropriate lubrication options based on the application’s speed and temperature range. Consider whether seals or shields are necessary to protect the bearing from contaminants.

  • Environmental Conditions:

Factor in the operating environment, including exposure to corrosive substances, chemicals, water, or dust. Choose materials and coatings that can withstand the specific environmental challenges.

  • Bearing Material:

Select a bearing material that suits the application’s requirements. Common materials include stainless steel for corrosion resistance and high-carbon chrome steel for general applications.

  • Bearing Arrangement:

Consider whether a single-row, double-row, or multiple bearings in a specific arrangement are needed to accommodate the loads and moments present in the application.

By carefully evaluating these factors, engineers and designers can choose the most suitable ball bearing that aligns with the specific demands of the application, ensuring optimal performance, durability, and overall operational efficiency.

China OEM China Wholesale 1688 Motorcycle Bicycle Parts Roller Wheel Bearing Ball 6201-2RS 6301-2RS Deep Groove Ball Bearings   with Hot sellingChina OEM China Wholesale 1688 Motorcycle Bicycle Parts Roller Wheel Bearing Ball 6201-2RS 6301-2RS Deep Groove Ball Bearings   with Hot selling
editor by CX 2023-08-23

China Best Sales CZPT  Timken CZPT CZPT CZPT Wheel Bearing Spherical Roller Bearing Taper Roller Bearing Cylindrical Roller Bearing Deep Groove Ball Bearing 6204 UC205 30205 carrier bearing

Product Description

Product Description

Spherical roller bearings are double row, self-retaining units comprising solid outer ring with a concave raceway, solid inner rings and barrel rollers with cages. The inner rings with cylingdrical or tapered bores. The symmetrical barrel rollers freely align themselves to the concave outer ring raceway. As a result, shaft deflectiongs and mislignments of the bearing seats are compensated.

Model: 20000 CC/CCK/CC W33/CCK W33/CCK MB/CA/CAK
+H0000/CCK W33+H0000 series
Material: Gcr15, chrome Steel,
Precision: P0–P5
Clearance: C0-C3
Cage: Brass/Steel

———————————————————

We,
Guarantee the Quality standard ASSURED. In contract.

Guarantee the Delivery time as ASSURED (MAX. 40D)

Guarantee the Material as ASSURED

Guarantee the Package As ASSURED

Our Advantages
1, Experience: 20 years experience on bearing manufacturing and exporting.
2, Customer: Exporting to more than 126 countries on 6 continents
3, Quality standard: ONLY Above than P6
4, Delivery Within: 10-40 days after T/T or L/C, pay penalty for any delay.

Basic Features of Tapered Roller Bearing
.

Types

6000 series
6200 series
6300 series
 
Material of Races: Chrome steel
Material of cage: steel
Delivery : 30 – 45 days
Shipping: By Sea/Air
Clearance : C2 / C0 / C3 / C4 / C5
Tolerance  P0 / P6 / P5 / P4 / P2
Vibration : Z1V1 / Z2V2/ Z3V3/ Z4V3

 

Contact Angle: 25°
Aligning: Aligning Bearing
Separated: Separated
Rows Number: Multiple
Load Direction: Radial Bearing
Material: Cast Iron
Samples:
US$ 1/Piece
1 Piece(Min.Order)

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Request Sample

ball bearing

What Role do Seals and Shields Play in Protecting Ball Bearings from Dirt and Debris?

Seals and shields are critical components of ball bearings that play a crucial role in protecting them from dirt, debris, moisture, and contaminants in various applications. These protective features help maintain the integrity of the bearing’s internal components and ensure reliable operation. Here’s how seals and shields contribute to bearing protection:

  • Contaminant Exclusion:

Seals and shields create a physical barrier between the external environment and the bearing’s interior. They prevent dust, dirt, water, and other contaminants from entering the bearing and coming into contact with the rolling elements and raceways.

  • Lubrication Retention:

Seals and shields help retain lubrication within the bearing. They prevent the lubricant from escaping and contaminants from entering, ensuring that the bearing remains properly lubricated for smooth operation and reduced friction.

  • Corrosion Prevention:

Seals and shields protect bearing components from exposure to moisture and corrosive substances. By preventing moisture ingress, they help extend the bearing’s lifespan by minimizing the risk of corrosion-related damage.

  • Extended Bearing Life:

Seals and shields contribute to the overall longevity of the bearing by reducing wear and damage caused by contaminants. They help maintain a clean internal environment, which promotes proper rolling contact and minimizes the risk of premature failure.

  • Enhanced Performance in Harsh Environments:

In applications exposed to harsh conditions, such as outdoor machinery or industrial settings, seals and shields are vital. They protect bearings from abrasive particles, chemicals, and extreme temperatures, ensuring reliable performance despite challenging conditions.

  • Noise and Vibration Reduction:

Seals and shields can help reduce noise and vibration generated by the bearing. They provide additional damping and stability, contributing to smoother operation and enhanced user comfort in noise-sensitive applications.

  • Customized Protection:

Manufacturers offer a variety of seal and shield designs to suit different application requirements. Some seals provide higher levels of protection against contamination, while others are designed for high-speed or high-temperature environments.

  • Trade-Offs:

While seals and shields offer significant benefits, they can also introduce some friction due to contact with the bearing’s inner or outer ring. Engineers must balance the level of protection with the desired operating characteristics, considering factors like friction, speed, and environmental conditions.

Overall, seals and shields play a vital role in maintaining the integrity and performance of ball bearings. By effectively preventing contaminants from entering and preserving lubrication, they ensure the smooth and reliable operation of machinery and equipment in a wide range of applications.

Customization:
Available

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Customized Request

ball bearing

What is a Ball Bearing and How does it Function in Various Applications?

A ball bearing is a type of rolling-element bearing that uses balls to reduce friction between moving parts and support radial and axial loads. It consists of an outer ring, an inner ring, a set of balls, and a cage that separates and maintains a consistent spacing between the balls. Here’s how ball bearings function in various applications:

  • Reduction of Friction:

Ball bearings function by replacing sliding friction with rolling friction. The smooth, spherical balls minimize the contact area between the inner and outer rings, resulting in lower friction and reduced heat generation.

  • Radial and Axial Load Support:

Ball bearings are designed to support both radial loads (forces perpendicular to the shaft’s axis) and axial loads (forces parallel to the shaft’s axis). The distribution of balls within the bearing ensures load-carrying capacity in multiple directions.

  • Smooth Rotational Movement:

Ball bearings facilitate smooth and precise rotational movement. The rolling motion of the balls allows for controlled and continuous rotation with minimal resistance.

  • Applications in Machinery:

Ball bearings are used in a wide range of machinery and equipment, including motors, generators, gearboxes, conveyors, and fans. They enable the efficient transfer of motion while reducing wear and energy losses.

  • Automotive Industry:

Ball bearings are extensively used in automobiles for various applications, including wheel hubs, transmission systems, steering mechanisms, and engine components. They provide reliability and durability in challenging automotive environments.

  • Industrial Machinery:

In industrial settings, ball bearings support rotating shafts and ensure the smooth operation of equipment such as pumps, compressors, and machine tools.

  • High-Speed Applications:

Ball bearings are suitable for high-speed applications due to their low friction and ability to accommodate rapid rotation. They are useball bearing

What are the Common Signs of Wear or Damage in Ball Bearings that Indicate the Need for Replacement?

Ball bearings are subjected to wear and stress during operation, and over time, they may exhibit signs of damage or deterioration that warrant replacement. Recognizing these signs is crucial to prevent catastrophic failure and ensure safe and reliable operation. Here are the common signs of wear or damage in ball bearings:

  • Unusual Noise:

If you hear unusual grinding, clicking, or rumbling noises coming from the bearing during operation, it may indicate worn-out or damaged components. Unusual noise suggests that the bearing is no longer operating smoothly.

  • Vibration:

Excessive vibration in the machinery can be a sign of bearing wear. Vibrations can result from uneven wear, misalignment, or damaged components within the bearing.

  • Increased Temperature:

Higher operating temperatures than usual may indicate increased friction due to inadequate lubrication, wear, or other issues. Monitoring the bearing’s temperature can help identify potential problems.

  • Irregular Movement:

If you notice irregular movement, jerking, or sticking during rotation, it could be a sign that the bearing is no longer operating smoothly. This may be due to damaged rolling elements or raceways.

  • Reduced Performance:

If the machinery’s performance has decreased, it may be due to a compromised bearing. Reduced efficiency, increased energy consumption, or a decline in overall performance could be indicators of bearing wear.

  • Visible Wear or Damage:

Inspect the bearing for visible signs of wear, such as pitting, scoring, or discoloration on the rolling elements or raceways. Severe wear or damage is a clear indication that the bearing needs replacement.

  • Leakage or Contamination:

If there is evidence of lubricant leakage, contamination, or the presence of foreign particles around the bearing, it suggests that the seal or shield may be compromised, leading to potential damage.

  • Looseness or Excessive Play:

If you can feel excessive play or looseness when manually moving the bearing, it could indicate worn-out components or misalignment.

  • Reduced Lifespan:

If the bearing’s expected lifespan is significantly shorter than usual, it may be due to inadequate lubrication, excessive loads, or improper installation, leading to accelerated wear.

  • Frequent Failures:

If the bearing is consistently failing despite regular maintenance and proper use, it could indicate a chronic issue that requires addressing, such as inadequate lubrication or misalignment.

It’s important to conduct regular inspections, monitor performance, and address any signs of wear or damage promptly. Replacing worn or damaged ball bearings in a timely manner can prevent further damage to machinery, reduce downtime, and ensure safe and efficient operation.

d in applications like electric motors and aerospace components.

  • Precision Instruments:

For precision instruments, such as watches, cameras, and medical devices, ball bearings provide accurate rotational movement and contribute to the overall performance of the instrument.

  • Variety of Sizes and Types:

Ball bearings come in various sizes, configurations, and materials to suit different applications. Different types include deep groove ball bearings, angular contact ball bearings, thrust ball bearings, and more.

In summary, ball bearings are essential components in a wide range of applications where smooth rotation, load support, and reduced friction are critical. Their versatility, reliability, and efficiency make them indispensable in industries spanning from automotive to industrial machinery to precision instruments.

China Best Sales CZPT  Timken CZPT CZPT CZPT Wheel Bearing Spherical Roller Bearing Taper Roller Bearing Cylindrical Roller Bearing Deep Groove Ball Bearing 6204 UC205 30205   carrier bearingChina Best Sales CZPT  Timken CZPT CZPT CZPT Wheel Bearing Spherical Roller Bearing Taper Roller Bearing Cylindrical Roller Bearing Deep Groove Ball Bearing 6204 UC205 30205   carrier bearing
editor by CX 2023-08-10