Product Description
China Swing Circle Gear 10-20 0741/0-57142 Slewing Ring Bearings For Excavator
Four-point contact ball slewing turntable bearings
consist of 2 ring seats. Compact structure, light weight, steel ball and arc track contact at 4 points, can bear axial force, radial force and overturning moment at the same time, has strong dynamic load.
Single row cross roller slewing bearing
Composed of 2 or 3 rings. compact structure, light weight, high manufacturing accuracy, small assembly gap and high requirement for installation accuracy. Rollers are 1:1 cross-arranged.
Can be bear axial force, overturning moment and large radial force at the same time,and widely used in lifting transportation, construction machinery and precesion products.
Double row ball slewing bearings
This kind of bearings can support high static loads with simple structures. They are mainly used in situations with variation load position and direction and continuously rotating. Main applications of this kind of bearings are deck hoisting, mining and material handling etc.
Three row roller slewing bearing
Three row roller bearing CZPT to bear all kinds of loads at the same time, it is the largest 1 of the 4 structural products with large axle and radial dimensions and firm structure. Especially suitable for heavy machinery requiring larger diameter, such as bucket wheel stacker and reclaimer, wheel crane, marine crane, port crane, ladle turret,large tonnage truck crane,heavy machinery and so on.
Flange-Light Type Slewing Bearing
The Thin Section Slewing Bearing has the same structure with the ordinary slewing bearing,but the weight is light,and rotate flexibly,which widely used in the food machinaery,cHangZhou machinery and environmental machinery etc.
| Model DL |
Weight [kg] |
Dimensions | Mounting dimension | Structural dimension | Gear data | Gear circumferential force | Clearance | ||||||||||||||||||
| D [mm] |
De [mm] |
H [mm] |
D1 [mm] |
D2 [mm] |
na | Φ/M [mm] |
ni | Φ/M [mm] |
t [mm] |
n1 | D3 [mm] |
d1 [mm] |
A [mm] |
Hu [mm] |
D [mm] |
M [mm] |
Z [mm] |
B [mm] |
k.m [mm] |
Allowed [KN] |
Max [KN] |
Axial | Radial | ||
| 232.20.571 | 26.9 | 518 | 326.5 | 56 | 490 | 375 | 16 | 18 | 12 | M12 | 20 | 4 | 412.5 | 415.5 | 453 | 10.5 | 335 | 5 | 67 | 45.5 | -0.75 | 13.54 | 27.08 | ≤0.5 | ≤0.5 |
| 232.20.0544 | 36.7 | 648 | 445.5 | 56 | 620 | 505 | 20 | 18 | 16 | M12 | 20 | 4 | 542.5 | 545.5 | 583 | 10.5 | 456 | 6 | 76 | 45.5 | -0.6 | 16 | 32 | ≤0.5 | ≤0.5 |
| 232.20.0644 | 43.4 | 748 | 547.5 | 56 | 720 | 605 | 24 | 18 | 18 | M12 | 20 | 4 | 642.5 | 645.5 | 683 | 10.5 | 558 | 6 | 93 | 45.5 | -0.6 | 15.62 | 31.24 | ≤0.5 | ≤0.5 |
| 232.20. 0571 | 50.8 | 848 | 649.2 | 56 | 820 | 705 | 24 | 18 | 20 | M12 | 20 | 4 | 742.5 | 745.5 | 783 | 10.5 | 660 | 6 | 110 | 45.5 | -0.6 | 15.32 | 30.64 | ≤0.5 | ≤0.5 |
| 232.20.0844 | 61.3 | 948 | 737.6 | 56 | 920 | 805 | 28 | 18 | 20 | M12 | 20 | 4 | 842.5 | 845.5 | 883 | 10.5 | 752 | 8 | 94 | 45.5 | -0.8 | 20.8 | 41.6 | ≤0.5 | ≤0.5 |
| 232.20.0944 | 65.4 | 1048 | 841.6 | 56 | 1571 | 905 | 32 | 18 | 22 | M12 | 20 | 4 | 942.5 | 945.5 | 983 | 10.5 | 856 | 8 | 107 | 45.5 | -0.8 | 20.49 | 40.98 | ≤0.5 | ≤0.5 |
| 232.20.1094 | 80.3 | 1198 | 985.6 | 56 | 1170 | 1055 | 32 | 18 | 24 | M12 | 20 | 4 | 1092.5 | 1095.5 | 1133 | 10.5 | 1000 | 8 | 125 | 45.5 | -0.8 | 20.16 | 40.32 | ≤0.5 | ≤0.5 |
| Model DL |
Weight [kg] |
Dimensions | Mounting dimension | Structural dimension | Gear data | Gear circumferential force | Clearance | ||||||||||||||||||
| D [mm] |
De [mm] |
HF [mm] |
D1 [mm] |
D2 [mm] |
na | Φ/M [mm] |
ni | Φ/M [mm] |
t [mm] |
n1 | D3 [mm] |
d1 [mm] |
C [mm] |
HFu [mm] |
D [mm] |
m [mm] |
Z [mm] |
B [mm] |
k.m [mm] |
Allowed [KN] |
Max [KN] |
Axial | Radial | ||
| 231.20.571 | 29 | 504 | 304 | 56 | 455 | 332 | 10 | M12 | 24 | 18 | 20 | 4 | 412.5 | 415.5 | 375 | 10.5 | 495 | 5 | 99 | 45.5 | -0.5 | 11.75 | 23.5 | ≤0.5 | ≤0.5 |
| 231.20.0544 | 39.2 | 640.8 | 434 | 56 | 585 | 462 | 14 | M12 | 28 | 18 | 20 | 4 | 542.5 | 545.5 | 505 | 10.5 | 630 | 6 | 105 | 45.5 | -0.5 | 14.2 | 28.4 | ≤0.5 | ≤0.5 |
| 231.20.0644 | 47.2 | 742.8 | 534 | 56 | 685 | 562 | 16 | M12 | 32 | 18 | 20 | 4 | 642.5 | 645.5 | 605 | 10.5 | 732 | 6 | 122 | 45.5 | -0.6 | 14.2 | 28.4 | ≤0.5 | ≤0.5 |
| 231.20. 0571 | 53.1 | 838.8 | 634 | 56 | 785 | 662 | 18 | M12 | 32 | 18 | 20 | 4 | 742.5 | 745.5 | 705 | 10.5 | 828 | 6 | 138 | 45.5 | -0.6 | 14.2 | 28.4 | ≤0.5 | ≤0.5 |
| 231.20.0844 | 64.7 | 950.4 | 734 | 56 | 885 | 762 | 18 | M12 | 36 | 18 | 20 | 4 | 842.5 | 845.5 | 805 | 10.5 | 936 | 8 | 117 | 45.5 | -0.8 | 18.93 | 37.86 | ≤0.5 | ≤0.5 |
| 231.20.0944 | 69.1 | 1046.4 | 834 | 56 | 985 | 862 | 20 | M12 | 40 | 18 | 20 | 4 | 942.5 | 945.5 | 905 | 10.5 | 1032 | 8 | 129 | 45.5 | -0.8 | 18.93 | 37.86 | ≤0.5 | ≤0.5 |
| 231.20.1094 | 82.5 | 1198.4 | 984 | 56 | 1135 | 1012 | 22 | M12 | 40 | 18 | 20 | 4 | 1092.5 | 1095.5 | 1055 | 10.5 | 1184 | 8 | 148 | 45.5 | -0.8 | 18.93 | 37.86 | ≤0.5 | ≤0.5 |
| Model | Weight [kg] |
Dimensions | Mounting dimension | Structural dimension | Clearance | ||||||||||||||
| D [mm] |
De [mm] |
HF [mm] |
D1 [mm] |
D2 [mm] |
na | Φ/M [mm] |
ni | Φ/M [mm] |
n1 | D3 [mm] |
d1 [mm] |
A [mm] |
C [mm] |
HFu [mm] |
HFo [mm] |
Axial | Radial | ||
| 230.20.571 | 23 | 518 | 304 | 56 | 490 | 332 | 16 | 18 | 24 | 18 | 4 | 412.5 | 415.5 | 453 | 375 | 10.5 | 10.5 | ≤0.5 | ≤0.5 |
| 230.20.0544 | 30.4 | 648 | 434 | 56 | 620 | 462 | 20 | 18 | 28 | 18 | 4 | 542.5 | 545.5 | 583 | 505 | 10.5 | 10.5 | ≤0.5 | ≤0.5 |
| 230.20.0644 | 35.8 | 748 | 534 | 56 | 720 | 562 | 24 | 18 | 32 | 18 | 4 | 642.5 | 645.5 | 683 | 605 | 10.5 | 10.5 | ≤0.5 | ≤0.5 |
| 230.20. 0571 | 42.2 | 848 | 634 | 56 | 820 | 662 | 24 | 18 | 32 | 18 | 4 | 742.5 | 745.5 | 783 | 705 | 10.5 | 10.5 | ≤0.5 | ≤0.5 |
| 230.20.0844 | 47.1 | 948 | 734 | 56 | 920 | 762 | 28 | 18 | 36 | 18 | 4 | 842.5 | 845.5 | 883 | 805 | 10.5 | 10.5 | ≤0.5 | ≤0.5 |
| 230.20.0944 | 52.3 | 1048 | 834 | 56 | 1571 | 862 | 32 | 18 | 40 | 18 | 4 | 942.5 | 945.5 | 983 | 905 | 10.5 | 10.5 | ≤0.5 | ≤0.5 |
| 230.20.1094 | 61.1 | 1198 | 984 | 56 | 1170 | 1012 | 32 | 18 | 40 | 18 | 4 | 1092.5 | 1095.5 | 1133 | 1055 | 10.5 | 10.5 | ≤0.5 | ≤0.5 |
Note:
1. n1 is the number of lubricating holes. Oil cup M8×1JB/T7940.1~JB/T7940.2.The Oil nipple’s location can be changed according to the user’s application.
2. “Km” is addendum reduction.
| Type | • Single row 4 point contact ball slewing bearing • Single row crossed cylindrical roller slewing bearings • Double row ball slewing bearings •Double row Roller/ball combination slewing bearing •Three-Row Roller Slew Ring Bearing |
| Rolling elements | Steel ball / Cylinder Roller |
| Rolling elements Material | GCr5/GCr15SiMn/Customized |
| Bearing Material | 50Mn/42CrMo/42CrMo4V /Customized |
| Cage Material | Nylon/ steel /copper |
| Structure | taper pin , Mounting holes,Inner ring ,grease fitting,load plug, seals , roller ,spacer balls or separators |
| Outer diameter | 50-10000mm |
| Bore size | 50-10000mm |
| Mounting hole | Through hole/Tapped hole |
| Raceway hardness | 55-62HRC |
| Inner and outer ring modulation hardness |
229-269HB/Customized |
| Gear type | No gear ,Internal gear , External gear. |
| Embellish grease | EP2 lithium lubricating grease |
| Certificate | ABS.BV,DNV,ISO9001,GL,3.1,3.2 |
| Application area | Ladle turret,Stacker crane,Bucket wheel machine,Solar heliostat Tracking System,port crane, Cabling machine,tower crane , offshore platform,ferris wheel, Palletizing robot,Rotary metallurgical furnace,can packing machine,Wind blade transporter,shield tunneling machine,tube push bench,excavator |
| Brand Name | LYMC |
| Place of Origin | HangZhou ZheJiang |
| Warranty | 12 months |
| Payment term | T/T is our first choice |
|
Packing details |
1,Filling with anti-rust oil 2.Corved with Plastic paper 3.Corved with kraft paper 4.Corved with Blue tie 5.Put in wooden box |
Product Process
Application:
– Excavators – Drilling rigs – Mining Equipments – Cranes -Offshore Equipments – Vehicles – Machine Tools – Wind Turbines
About Us:
HangZhou MC Bearing Technology Co.,Ltd (LYMC),who is manufacture located in bearing zone, focus on Slewing bearing, cross roller bearing and pinion,Dia from 50mm-8000mm, Our team with technical and full experience in the bearing industry.
*Professional in researching, developing, producing & marketing high precision bearings for 16 years;
*Many series bearings are on stock; Factory directly provide, most competitive price;
*Advanced CNC equipment, guarantee product accuracy & stability;
*One stop purchasing, product include cross roller bearing, rotary table bearing, robotic bearing, slewing bearing, angular contact ball bearing, large and extra large custom made bearing, diameter from 50~9000mm;
*Excellent pre-sale & after sale service. We can go to customers’ project site if needed.
*Professional technical & exporting team ensure excellent product design, quotation, delivering, documentation & custom clearance.
Our Service:
FAQ:
1.Q: Are you trading company or manufacturer ?
A: We are professional slewing bearing manufacturer with 20 years’ experience.
2.Q: How long is your delivery time?
A: Generally it is 4-5 days if the goods are in stock. or it is 45 days if the goods are not in
stock, Also it is according to quantity.
3.Q: Do you provide samples ? is it free or extra ?
A: Yes, we could offer the sample, it is extra.
4.Q: What is your terms of payment ?
A: Payment=1000USD, 30% T/T in advance, balance before shipment.
5.Q: Can you provide special customization according to the working conditions?
A: Sure, we can design and produce the slewing bearings for different working conditions.
6.Q: How about your guarantee?
A: We provide lifelong after-sales technical service.
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| Standard or Nonstandard: | Standard |
|---|---|
| Feature: | High Speed, Cold-Resistant, Corrosion-Resistant, Heat-Resistant |
| Sealing Gland: | Sealed On Both Sides |
| Rolling-Element Number: | Single-Row |
| Roller Type: | Straight Raceway |
| Material: | 50mn/42CrMo |
| Customization: |
Available
| Customized Request |
|---|

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.

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.

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.


editor by CX 2024-04-12