Product Description
Product Specification:
| Detail Specification | Wheel size: 100X50,125X50,150X50,200X50mm |
| Wheel material: PU on cast iron core |
|
| Load capacity: 280,350,410,420kgs; |
|
| Zinc plated, Double ball bearing |
|
| Top plate size: 114X100mm |
|
| Bolt hole spacing: 84X71mm |
|
| Bolt hole diameter: 11mm |
|
| Caster types: swivel, fixed, swivel w/dual brake and swivel w/side brake | |
| Payment terms | TT,30% for production, 70% balance should be paid before shipment |
| Packing details | Carton |
Advantages on our products:
1) High quality materials purchased with strictly quality check.
2) Each product checked strictly before packing.
3) We are professional manufacturer for over 25 years.
4) Trial order or mixed orders are accepted
5) OEM orders are welcome.
6) Prompt delivery
7) Any type of casters and wheels can be customized
Company Information:
Offering over 1,000 Varieties of Casters
Established in 1988 with a registered capital of $20 million, HangZhou Globe Caster is a professional manufacturer of all kinds of casters. We have developed 8 series and more than 1,000 varieties through constant improvement and innovation. Our products
are widely marketed in Europe, the US, Africa, the Middle East, Australia and Asia.
Ensuring Flexibility, Convenience and Durability of Products
We adopted advanced technology, equipment and high-quality materials to ensure the flexibility, convenience and durability of our products. In different circumstances, our products have wear, collision, chemical corrosion, low/high temperature resistance, trackless, floor protection and low noise features.
Contact Us Today
Our 120,000sqm factory and 500 skilled workers are ready to complete your volume orders.
Contact us today to get your order start.
Testing :
Workshop:
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| Type: | Rotating Wheel |
|---|---|
| Wheel Material: | PU |
| Brake: | With Brake |
| Bearing Type: | Ball Bearing |
| Surface Treatment: | Zinc Plated |
| Brand: | Globe |
| Customization: |
Available
| Customized Request |
|---|

Are there Specific Maintenance Practices to Ensure the Longevity of Ball Bearings?
Maintaining ball bearings is essential to ensure their longevity, reliable performance, and prevent premature failure. Proper maintenance practices can extend the lifespan of ball bearings and the equipment they are used in. Here are specific maintenance practices to consider:
- Regular Lubrication:
Implement a regular lubrication schedule using the appropriate lubricant for the application. Lubrication reduces friction, prevents wear, and helps dissipate heat. Follow manufacturer guidelines for lubricant type, quantity, and frequency.
- Clean Environment:
Keep the operating environment clean and free from contaminants. Dust, dirt, and debris can infiltrate bearings and cause damage. Use seals or shields to protect bearings from contaminants, especially in harsh environments.
- Proper Installation:
Ensure correct installation of bearings using proper tools and techniques. Improper installation can lead to misalignment, uneven load distribution, and premature wear. Follow manufacturer recommendations for installation procedures.
- Regular Inspections:
Perform routine visual inspections to check for signs of wear, damage, or contamination. Regular inspections can help identify issues early and prevent further damage. Pay attention to noise, vibration, and temperature changes.
- Temperature Monitoring:
Monitor bearing temperatures during operation using infrared thermometers or sensors. Abnormal temperature increases can indicate inadequate lubrication, misalignment, or other problems.
- Correct Handling:
Handle bearings with care to prevent damage during storage, transportation, and installation. Avoid dropping or subjecting them to impacts that can affect their internal components.
- Bearing Removal and Replacement:
Follow proper procedures when removing and replacing bearings. Use appropriate tools and techniques to avoid damage to the bearing or the surrounding components.
- Alignment Maintenance:
Maintain proper shaft and housing alignment to prevent excessive loads and wear on the bearing. Misalignment can lead to increased stress and premature failure.
- Training and Education:
Provide training to operators and maintenance personnel on proper bearing maintenance and handling practices. Educated personnel are more likely to identify issues and perform maintenance correctly.
- Documented Records:
Keep records of maintenance activities, inspections, lubrication schedules, and any issues encountered. This documentation helps track the bearing’s performance over time and informs future maintenance decisions.
By implementing these maintenance practices, you can ensure the longevity of ball bearings, minimize downtime, reduce operational costs, and maintain the reliability of the equipment they are a part of.

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.

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.


editor by CX 2024-02-20
China Cast Iron Heavy Load Pillow Block Bearing UCP208-24 bearing example
Sort: Pillow Block
Applicable Industries: Resorts, Garment Shops, Constructing Materials Shops, Producing Plant, Machinery Mend Retailers, Foodstuff & Beverage Manufacturing facility, Farms, Restaurant, Home Use, Retail, Meals Shop, Printing Retailers, Design works , Mercedes G4 PTO Casting High High quality (Electricity sixteen Hp twelve Kw & Management Pneumatic & Mounting Rear ) HYDROTIME HYDRAULIC Energy & Mining, Meals & Beverage Shops, Other, Advertising Organization
Design Amount: UCP208-24
Precision Score: P5
Solution identify: Solid Iron Large Load Pillow Block Bearing UCP208-24
Feature: Higher precisioin and minimal sound
Bearing Material: Carbon Metal / Chrome Metal
Application: Gearbox, Vehicle, Reduction box, Motor machinery, Mining machinery
Standard dynamic load rating: 32.5MM
Simple static load score: 20KN
Fatigue load limit: .8KN
imiting pace with shaft tolerance h6: 3750 r/min
Package deal: Box+ Cartons + Pallet
UCP208-24: 2.05KG
Packaging Specifics: Forged Iron Weighty Load Pillow Block Bearing UCP208-24 one deal with our brand or any other brand.
A pillow block bearing (or plummer block) is a pedestal employed to give assistance for a rotating shaft with the aid of compatible bearings & different equipment. The assembly is composed of a mounting block which homes a bearing.[1] The block is mounted to a basis and a shaft is inserted permitting the interior element of the bearing / shaft to rotate.The inside of of the bearing is usually .001 inches (.571 mm) bigger than the shaft to make certain a restricted in shape. Set screws, locking collars, or set collars are typically utilised to safe the shaft. Housing content for a pillow block is usually created of forged iron[1] or solid metal. Specification
| Name | Cast Iron Large Load Pillow Block Bearing UCP208-24 |
| Bearing Kind | Pillow Block Bearing |
| Model Nmuber | UCP208-24 |
| Material | Chrome steel or bearing metal(Gcr15)Stainless steel / Carbon metal/Ceramic |
| Cage(Retainer) | Steel, Brass, Nylon |
| Quality Level | Reach the very same degree as Japanese and European Bearing |
| Delivery time | 1.For samples: 1-3days 2.For get: Normally 15-20 times right after |
| shaft Diameter Inch | Number | Housing quantity | Bearing number |
| 1/2 | UCP201-008D1 | P203D1 | UC201-008D1 |
| 9/sixteen | UCP202-009D1 | P203D1 | UC202-009D1 |
| 5/eight | UCP202-571D1 | P203D1 | UC202-571D1 |
| eleven/16 | UCP203-011D1 | P203D1 | UC203-011D1 |
| 3/four | UCP204-012D1 | P204D1 | UC204-012D1 |
| 13/16 | UCP205-013D1 | P205D1 | UC205-013D1 |
| 7/8 | UCP205-014D1 | P205D1 | UC205-014D1 |
| fifteen/sixteen | UCP205-015D1 | P205D1 | UCP05-015D1 |
| 1 | UCP205-100D1 | P205D1 | UC205-100D1 |
| 1 1/16 | UCP206-101D1 | P206D1 | UC206-101D1 |
| 1 1/8 | UCP206-102D1 | P206D1 | UC206-102D1 |
| 1 3/sixteen | UCP206-103D1 | P206D1 | UC206-103D1 |
| 1 1/4 | UCP206-104D1 | P206D1 | UC206-104D1 |
| 1 1/four | UCP207-104D1 | P207D1 | UC207-104D1 |
| 1 5/sixteen | UCP207-105D1 | P207D1 | UC207-105D1 |
| 1 3/eight | UCP207-106D1 | P207D1 | UC207-106D1 |
| 1 7/16 | UCP207-107D1 | P207D1 | UC207-107D1 |
| 1 1/two | UCP208-108D1 | P208D1 | UC208-108D1 |
| 1 9/16 | UCP208-109D1 | P208D1 | UC208-109D1 |
| 1 5/8 | UCP209-110D1 | P209D1 | UC209-110D1 |
| 1 eleven/sixteen | UCP209-111D1 | P209D1 | UC209-111D1 |
| 1 3/four | UCP209-112D1 | P209D1 | UC209-112D1 |
| 1 thirteen/sixteen | UCP210-113D1 | P210D1 | UC210-113D1 |
| 1 7/8 | UCP210-114D1 | P210D1 | UC210-114D1 |
| 1 15/16 | UCP210-115D1 | P210D1 | UC210-115D1 |
| 2 | UCP210-200D1 | P210D1 | UC210-200D1 |
| 2 | UCP211-200D1 | P211D1 | UC211-200D1 |
| 2 1/sixteen | UCP211-201D1 | P211D1 | UC211-201D1 |
| 2 1/8 | UCP211-202D1 | P211D1 | UC211-202D1 |
| 2 3/16 | UCP211-203D1 | P211D1 | UC211-203D1 |
| 2 1/4 | UCP212-204D1 | P212D1 | UC212-204D1 |
| 2 3/8 | UCP212-206D1 | P212D1 | UC212-206D1 |
| 2 7/sixteen | UCP212-207D1 | P212D1 | UC212-207D1 |
| 2 1/2 | UCP213-208D1 | P213D1 | UC213-208D1 |
| 2 eleven/16 | UCP214-211D1 | P214D1 | UC214-211D1 |
| 2 3/4 | UCP214-212D1 | P214D1 | UC214-212D1 |
| 2 fifteen/sixteen | UCP215-215D1 | P215D1 | UC215-215D1 |
| 3 | UCP215-300D1 | P215D1 | UC215-300D1 |
| 3 1/eight | UCP216-302D1 | P216D1 | UC216-302D1 |
| 3 1/four | UCP217-304D1 | P217D1 | UC217-304D1 |
| 3 1/2 | UCP218-308D1 | P218D1 | UC218-308D1 |
Q: How lengthy is your shipping and delivery time?A: Usually it is 5-10 times if the items are in inventory. or it is fifteen-twenty times if the items are not in stock, it is in accordance to quantity.
Q: Do you supply samples ? is it free or added ?A: Sure, we could supply the sample for totally free cost but do not pay the value of freight.
Q: What is your terms of payment of UCP 208-24?A: Payment=1000USD, 30% T/T in advance ,balance before shippment.
If you have an additional concern, pls truly feel free to contact us and welcome to your inquiry! china skilled factory large precision cast iron QD taper bore sheave 8V collection pulleys
Our Certifications
What is a bushing?
A bushing is a cylindrical lining made of a flexible material inside a metal housing. The inner squeeze tube of the bushing helps prevent it from being squeezed by the clip. The material also reduces friction and isolates vibration and noise, while improving performance. This article discusses some of the most common uses for bushings. In this article, we’ll discuss the most important reasons to choose a bushing for your transmission.
DESCRIPTION Anti-friction cylindrical lining
A bushing is a bearing that minimizes friction and wear within the bore. It is also used as a housing for shafts, pins, hinges or other types of objects. It takes its name from the Middle Dutch word shrub, which means “box”. It is also homologous to the second element of blunderbuss. Here’s how to identify bushings and how to use them.
Vibration isolation
Vibration mounts are required for inertial guidance and navigation systems, radar components, and engine accessories. Bushings isolate vibration and provide a more robust design in these applications. Bushings help eliminate vibration-related operational challenges and help protect expensive equipment from damage. Below are several types of vibrating mounts and the differences between them. Each type has unique uses and applications, and the type you choose will depend on the nature of the components and the environment.
Vibration isolation is an important safety feature of many modern machines and instruments. Used to reduce the dynamic consumption that an object suffers at runtime. Instead, it protects equipment and structures from amplitude-related damage. Bushings insulate objects from vibration by reducing the amount of dynamic action transferred from the object to the support structure. Bushings are a popular choice for vibration equipment manufacturers.
Vibration isolation is important in many industrial applications. Vibration can wreak havoc on electronic and mechanical equipment. The forces exerted by vibration can reduce the life expectancy of equipment, leading to premature failure. The cost of isolation depends on the weight of the object being isolated. Most isolators have minimum damping in the isolation region and maximum damping at natural frequencies. In addition, the cost of installation, transportation and maintenance is usually included in the cost.
In addition to providing shock and vibration isolation, bushings help stabilize components by absorbing shock. These devices may need to be replaced in the long run, and your machine design may dictate whether you need to buy more than one. Bushings are an important part of your equipment, so don’t skimp on quality when choosing a vibration isolation mount. You won’t regret it. They won’t break your budget, but will keep your equipment safe.
reduce noise
A properly positioned tree will block the view between the noise source and your house. Make sure the tree is taller than your house to effectively reduce noise. Also, make sure the sprocket and axle are properly aligned. The less noise they make, the better. If you have a noisy neighbor, you may want to consider installing a bushing at the front of the house to block the noise.
While it’s possible to replace the bushing yourself, it’s best to make sure you follow some basic procedures first. Park your car on level ground and apply the brakes before removing the hood. Check that the wheels move freely. Remember to wear gloves and goggles, and don’t cut yourself with sharp objects when changing bushings. If you can’t see under the hood, try opening the hood to allow more light to reach the engine area.
SuperPro bushings are designed to reduce noise and vibration in the automotive industry. They are a popular choice for aftermarket bushing manufacturers. While OE rubber bushings are soft and quiet, these polyurethane bushings are specifically designed to eliminate these noise issues. By determining the diameter of your vehicle’s anti-roll bars, you can choose the right bushing for your vehicle. You’ll be glad you did!
Damaged bushings can cause the stabilizer bar to become unstable. This, in turn, can cause the steering components to misalign, creating a loud ding. Worn bushings can also cause the wheel to squeak as it moves. If they’re worn, you’ll hear squeaks when cornering. You may even hear these noises when you are turning or changing lanes.
a bearing
A bushing is a component that provides a bearing surface for the forces acting axially on the shaft. A typical example of a thrust bearing is a propeller shaft. The bushing can be a separate part or an integral part of the machine. Typically, bushings are replaceable, while integral bearings are permanent and should not be replaced unless worn or damaged. Bushings are most commonly used in machinery, where they allow relative movement between components.
The bushing is usually an integral unit, while the bearing may have several parts. Simple bushings can be made of brass, bronze or steel. It is often integrated into precision machined parts and helps reduce friction and wear. Typically, bushings are made of brass or bronze, but other materials can also be used. Different designs have different applications, so you should understand what your application requires before purchasing a sleeve.
The most common uses of plain bearings are in critical applications, including turbines and compressors. They are also commonly used in low-speed shafting, including propeller shafts and rudders. These bearings are very economical and suitable for intermittent and linear motion. However, if your application does not require continuous lubrication, a plain bearing may not be required.
Another popular use for sleeves is in food processing. These bearings can be made from a variety of materials, including stainless steel and plastic. Plastic bearings are more cost-effective than metal and are an excellent choice for high-speed applications. These materials are also resistant to corrosion and wear. However, despite their high cost, they can be made from a variety of materials. However, in most cases, the materials used for plain bearings are aluminum nickel, phosphorus and silicon.

editor by czh 2023-02-17