Product Description
Self-aligning ball bearings can be made of plastic, ceramic, stainless steal and bearing steal.
Self-aligning ball bearings has 2 kinds of structures which are cylindrical bore and tapered bore. The material of the cage can be steel plale or synthetic resine etc. Its speciality is that its outer race are in spherical shape, and with the ability of self-aligning. It can repair the errors caused by different concentricity and deflection ,but its inner and outer ring relative slop is not allowed to be over 3 degrees
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.
| 51100 | 10*24*9 |
| 51101 | 12*26*9 |
| 51102 | 15*28*9 |
| 51103 | 17*30*9 |
| 51104 | 20*35*10 |
| 51105 | 25*42*11 |
| 51106 | 30*47*11 |
| 51107 | 35*52*11 |
| KOW51107 | |
| 51108 | 40*60*13 |
| 51109 | 45*65*14 |
| KOW51109 | |
| KJW51109 | 45*65*10.572 |
| AR51109 | |
| 51110 | 50*70*14 |
| 51111 | 55*78*16 |
| 51112 | 60*85*17 |
| 51113 | 65*90*17 |
| 51114 | 70*95*18 |
| 51115 | 75*100*19 |
| 51116 | 80*105*19 |
| 51117 | 85*110*19 |
| 51118 | 90*120*22 |
| 51120 | 100*135*25 |
| 51122 | 110*145*25 |
| 51124 | 120*155*25 |
| 51126 | 130*170*30 |
| 51128 | 140*180*31 |
| 51128M | 140*180*31 |
| 51130 | 150*190*31 |
| 51130M | 150*190*31 |
| 51132 | 160*200*31 |
| 51132M | 160*200*31 |
| 51134 | 170*215*34 |
| 51134M | 170*215*34 |
| 51136 | 180*225*34 |
| 51136M | 180*225*34 |
| 51138 | 190*240*37 |
| 51138M | 190*240*37 |
| 51140M | 220*250*38 |
| 51144 | 220*270*37 |
| 51148 | 240*300*45 |
| 51152 | 260*320*45 |
| 51156 | 280*350*53 |
| 51160 | 300*380*62 |
| 51164 | 320*400*63 |
| 51168 | 340*420*64 |
| 51172 | 360*440*66 |
| 51180 | 400*480*65 |
| 51184 | 420*500*65 |
| 511/530 | 530*640*85 |
| 511/600 | 600*710*85 |
| 511/670 | 670*800*105 |
| 511/670F3 | |
| 517/780F1 | 780*930*100 |
| 517/1420F1 | 1420*1540*90 |
| 517/1830F1 | 1830*1950*90 |
| 51200 | 10*26*11 |
| 51201 | 12*28*11 |
| 51202 | 15*32*12 |
| 51203 | 17*35*12 |
| 51204 | 20*40*14 |
| 51205 | 25*47*15 |
| 51206 | 30*52*16 |
| 51207 | 35*62*18 |
| 51208 | 40*68*19 |
| 51209 | 45*73*20 |
| 51210 | 50*78*22 |
| 51211 | 55*90*25 |
| 51212 | 60*95*26 |
| 51213 | 65*100*27 |
| 51214 | 70*105*27 |
| 51215 | 75*110*27 |
| 51216 | 80*115*28 |
| 51217 | 85*125*31 |
| 51218 | 90*135*35 |
| 51220 | 100*150*38 |
| 51222 | 110*160*38 |
| 51222M | 110*160*38 |
| 51224 | 120*170*39 |
| 51226 | 130*190*45 |
| 51228 | 140*200*46 |
| 51228M | 140*200*46 |
| 51230 | 150*225*51 |
| 51232 | 160*225*51 |
| 51232M | |
| 51234 | 170*240*55 |
| 51234M | |
| 51236 | 180*250*56 |
| 51236M | |
| 51238J | 190*270*62 |
| 51238 | |
| 51240J | 200*280*62 |
| 51240 | |
| 51244J | 220*300*63 |
| 51244 | |
| 51248 | 240*340*78 |
| 51252J | 260*360*79 |
| 51252 | |
| 51256 | 280*380*80 |
| 51260 | 300*420*95 |
| 51268 | 340*460*96 |
| 51272 | 360*500*110 |
| 51292 | 460*620*130 |
| 51292F3 | |
| 512/500 | 500*620*135 |
| 53201 | 12*28*11.4 |
| 53202 | 15*32*13.3 |
| 53203 | 17*35*13.2 |
| 53204 | 20*40*14.7 |
| 53205 | 25*47*16.7 |
| 53206 | 30*52*17.8 |
| 53207 | 35*62*19.9 |
| 53208 | 40*68*20.3 |
| 53209 | 45*73*21.5 |
| 53210 | 50*78*23.5 |
| 53211 | 55*90*27.3 |
| 53212 | 60*95*28 |
| 53213 | 65*100*28.7 |
| 53214 | 70*105*28.8 |
| 53215 | 75*110*28.3 |
| 53216 | 80*115*29.5 |
| 53217 | 85*125*33.1 |
| 53218 | 90*135*39.5 |
| 53220 | 100*150*40.9 |
| 53224 | 120*170*40.6 |
| 53224U | 200*300*75 |
| 52202 | 15*32*12 |
| 52203 | 17*35*12 |
| 52204 | 20*40*26 |
| 52205 | 25*47*28 |
| 52206 | 30*52*29 |
| 52207 | 35*62*34 |
| 52208 | 40*68*36 |
| 52209 | 45*73*37 |
| 52210 | 50*78*39 |
| 52211 | 55*90*45 |
| 52212 | 60*95*46 |
| 52213 | 65*100*47 |
| 52214 | 70*105*47 |
| 52215 | 75*110*47 |
| 52216 | 80*115*48 |
| 52217 | 85*125*55 |
| 52218 | 90*135*62 |
| 52220 | 100*150*67 |
| 52222 | 110*160*67 |
| 52224 | 120*170*67 |
| 52230M | |
| 52232 | 160*225*90 |
| 52232M | 160*225*90 |
| 52236 | 180*250*98 |
| 52236M | 180*250*98 |
| 52238 | 190*270*109 |
| 52238J | 190*270*109 |
| 52240 | 200*280*109 |
| 51304 | 20*47*18 |
| 51305 | 25*52*18 |
| 51306 | 30*60*21 |
| 51307 | 35*68*24 |
| 51308 | 40*78*26 |
| 51309 | 45*85*28 |
| 51310 | 50*95*31 |
| 51311 | 55*105*35 |
| 51312 | 60*110*35 |
| 51313 | 65*115*36 |
| 51314 | 70*125*40 |
| 51315 | 75*135*44 |
| 51316 | 80*140*44 |
| 51317 | 85*150*49 |
| 51318 | 90*155*50 |
| 51320 | 100*170*55 |
| 51322M | |
| 51324 | 120*210*70 |
| 51324M | |
| 51326 | 130*225*75 |
| 51326M | |
| 51328M | 140*240*80 |
| 51330 | 150*250*80 |
| 51330M | 150*250*80 |
| 51332 | 160*270*87 |
| 51334 | 170*280*87 |
| 51336 | 180*300*95 |
| 51338 | 190*320*105 |
| 51340 | 200*340*110 |
| 51348 | 240*380*112 |
| 51368 | 340*540*160 |
| 53306 | 30*60*22.6 |
| 53307 | 35*68*25.4 |
| 53308 | 40*78*28.5 |
| 53309 | 45*85*30.1 |
| 53310 | 50*95*34.3 |
| 53311 | 55*105*39.3 |
| 53312 | 60*110*38.3 |
| 53313 | 65*115*39.4 |
| 53314 | 70*125*44.2 |
| 53315 | 75*135*43.1 |
| 53316 | 80*140*47.6 |
/* 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
| Separated: | Unseparated |
|---|---|
| Load Direction: | Radial Bearing |
| Material: | Bearing Steel |
| Outer Dia.: | From 47mm to 110mm |
| Rolling Body: | Ball Bearings |
| The Number of Rows: | Single |
| Customization: |
Available
| Customized Request |
|---|

What is the role of cage design and materials in self-aligning bearing performance and durability?
The cage design and materials used in self-aligning bearings play a crucial role in determining their performance and durability. Here’s a detailed explanation:
- Guiding and Retaining Rolling Elements:
The primary function of the cage in a self-aligning bearing is to guide and retain the rolling elements, such as balls or rollers, in their proper positions. The cage prevents the rolling elements from contacting and rubbing against each other, ensuring smooth and controlled movement within the bearing. By providing precise spacing and alignment, the cage maintains the integrity of the bearing assembly and optimizes load distribution. It also minimizes the risk of damage or premature wear caused by improper positioning or collision of the rolling elements.
- Reducing Friction and Heat Generation:
The cage design and materials can significantly impact the friction and heat generation within the self-aligning bearing. An efficient cage design ensures proper lubrication distribution by allowing the lubricant to reach all the critical contact points between the rolling elements and raceways. This reduces friction and minimizes the associated heat generation, leading to improved overall bearing efficiency and reduced energy losses. Additionally, the choice of materials for the cage should consider factors such as low friction coefficients and good thermal conductivity to further optimize performance.
- Maintaining Alignment and Stability:
Self-aligning bearings are designed to accommodate misalignment between the shaft and the housing. The cage plays a vital role in maintaining the alignment and stability of the rolling elements, ensuring that they stay properly seated and aligned during operation. A well-designed cage provides sufficient space and support for the rolling elements to adjust and align themselves, even under dynamic conditions or when subjected to external forces. This enables the self-aligning bearing to continue operating smoothly and efficiently, minimizing the risk of excessive stress, wear, or premature failure.
- Enhancing Durability and Service Life:
The cage design and materials significantly impact the durability and service life of self-aligning bearings. A robust and durable cage is essential for withstanding the loads, impact forces, and vibrations that can occur during operation. The cage should be resistant to wear, fatigue, and corrosion to ensure long-term performance and reliability. By selecting appropriate cage materials, such as high-strength steels, thermoplastics, or engineered polymers, manufacturers can enhance the durability and service life of self-aligning bearings in various operating conditions.
- Reducing Weight and Inertia:
The cage design and materials also influence the weight and inertia of the self-aligning bearing. Lighter cage materials, such as certain polymers or composite materials, can help reduce the overall weight of the bearing assembly. This has several benefits, including lower energy consumption, reduced centrifugal forces, and improved dynamic performance. By minimizing the weight and inertia of the cage, self-aligning bearings can operate at higher speeds, exhibit improved response times, and potentially achieve higher levels of performance and efficiency.
Overall, the cage design and materials used in self-aligning bearings are critical factors in determining their performance, durability, and overall efficiency. A well-designed cage facilitates proper guidance and retention of the rolling elements, reduces friction and heat generation, maintains alignment and stability, enhances durability and service life, and contributes to overall weight optimization. By considering the specific application requirements and selecting the appropriate cage design and materials, engineers can optimize the performance and durability of self-aligning bearings in a wide range of industrial applications.

Can self-aligning bearings be customized or modified for unique industrial needs?
Yes, self-aligning bearings can be customized or modified to meet unique industrial needs. Here’s a detailed explanation:
- Customized Designs:
Manufacturers of self-aligning bearings often offer customization options to accommodate specific industrial requirements. These customization options can include:
- Size and Dimensions: Self-aligning bearings can be customized to different sizes and dimensions, allowing them to fit specific equipment or space constraints within an industrial setting.
- Load Capacity: Manufacturers can modify self-aligning bearings to handle higher or lower load capacities based on the unique demands of an application. This can involve altering the bearing’s internal geometry, material selection, or heat treatment processes.
- Operating Conditions: Customizations can be madeto enhance the performance of self-aligning bearings in specific operating conditions. For example, the bearing’s materials, lubrication, or sealing arrangements can be tailored to withstand extreme temperatures, corrosive environments, or high levels of contamination.
- Mounting Configurations: Self-aligning bearings can be customized to meet specific mounting requirements. This may involve modifying the bearing’s outer ring, inner ring, or flange configurations to ensure proper fit and alignment within a particular industrial setup.
- Sealing and Protection: Manufacturers can provide customized sealing arrangements to prevent the ingress of contaminants or protect the bearing from harsh external conditions. This can include adding specialized seals, shields, or coatings to enhance the bearing’s durability and longevity.
- Lubrication: The lubrication requirements of self-aligning bearings can be customized based on the application’s specific needs. Manufacturers can offer different lubrication options, such as solid lubricants or specialized greases, to optimize performance and minimize maintenance requirements.
- Collaboration with Manufacturers:
When unique industrial needs arise, it is advisable to collaborate closely with the bearing manufacturer or consult with bearing experts. They can provide technical expertise and guidance to assess the specific requirements and propose suitable customizations or modifications to the self-aligning bearings.
It is important to note that customization or modification of self-aligning bearings may involve additional costs and lead time for manufacturing. Therefore, a thorough evaluation of the application’s needs, cost-benefit analysis, and discussions with the manufacturer are essential to determine the feasibility and effectiveness of the customization process.
By leveraging the customization options offered by bearing manufacturers and working in collaboration with experts, self-aligning bearings can be tailored to meet the unique demands of various industries, ensuring optimal performance, reliability, and longevity in specific industrial applications.

What are the common types of self-aligning bearings, such as spherical or barrel roller bearings?
There are several common types of self-aligning bearings, each offering unique features and advantages. Here’s a detailed explanation of some of the common types:
- Spherical Roller Bearings:
Spherical roller bearings are one of the most common types of self-aligning bearings. They have a spherical outer ring raceway and two rows of barrel-shaped rollers positioned between the inner and outer rings. This design allows for the accommodation of misalignment and provides high radial load-carrying capacity. Spherical roller bearings are commonly used in heavy-duty applications, such as mining equipment, paper mills, and crushers.
- Barrel Roller Bearings:
Barrel roller bearings, also known as toroidal roller bearings, have a barrel-shaped roller arrangement with a concave outer ring raceway and a convex inner ring raceway. This design enables the bearing to accommodate misalignment and axial displacement. Barrel roller bearings are suitable for applications with high radial loads and moderate axial loads, such as in conveyor systems, printing presses, and industrial gearboxes.
- Self-Aligning Ball Bearings:
Self-aligning ball bearings consist of an inner ring with two rows of balls and an outer ring with a spherical raceway. The design allows for misalignment compensation and is particularly suited for applications with low to moderate radial loads and moderate axial loads. Self-aligning ball bearings are commonly used in electric motors, pumps, and automotive applications.
- Self-Aligning Thrust Roller Bearings:
Self-aligning thrust roller bearings are designed to accommodate misalignment in applications with axial loads. They have a spherical rolling element between the shaft washer and the housing washer, allowing for misalignment compensation. These bearings are commonly used in applications such as screw conveyors, heavy machinery, and marine propulsion systems.
- Adapter Sleeve Bearings:
Adapter sleeve bearings are a type of self-aligning bearing that incorporates an adapter sleeve, which facilitates easy mounting and dismounting of the bearing. They are commonly used in applications where frequent bearing replacement or adjustment is required. Adapter sleeve bearings are often employed in conveyor systems, agricultural machinery, and textile equipment.
These are just a few examples of common types of self-aligning bearings. Other variations and specialized designs exist to suit specific application requirements. It’s important to consider factors such as load capacity, operating conditions, and dimensional constraints when selecting the appropriate self-aligning bearing for a particular application.


editor by CX 2024-05-14