Product Description

Main Characteristics for Thrust Roller Bearings:
· It is a separation-bearing
Its load action line and axis form a certain angle, with a larger axial load
Capacity, some axial load can be also beared when radial load is working.
Such spherical rollers are banked arranged, and seat raceway is spherical, with aligning performance, so may allow a number of axis banked.
Can be used occasions of heavy load, allowing the higher speed.
Lubricating oil is generally used together.
Cage Types:
The steel stamping cage and car-entity cage are used depending on demands.
Main Application:
Hydro-electric power machines, vertical motor, ship-spiral Pulp axis, Arm cranes, machine tool rotary table, rolling mill rolling screw with reducer, forming machines
Main structure:
Thrust spherical roller bearings
Thrust spherical symmetrical roller bearings

Thrust Spherical Roller Bearing:
29340, 9069440, 29440E, 29244, 9069344, 29344, 9069444, 29444, 29248E, 9069348, 29348E, 29348E, 9 0571 52, 29252, 9069352, 29352E, 9069452, 29452E, 9069356, 29356E, 9069456, 29356E, 29456E, 9069360, 29360, 9069364, 29364E, 9069464, 29464E, 9069368, 29368, 29468, 9069472, 29472E, 29276E, 9 0571 80, 29280, 9069380, 29380, 9069480, 29480E, 29392, 9 0571 96, 29296, 29396, 29496E, 9 0571 /500, 292/500, 90693/500, 293/500,
90694/500, 294/800E, 293/530, 90694/530, 292/560, 9 0571 /560, 292/600, 90694/600, 9 0571 /630, 292/630E, 293/630E, 9 0571 /670, 292/670, 90694/750, 294/750E, 9 0571 /800, 294/800E, 9 0571 /1060, 691/1320, 292/1620

29420/YA3, 29422/YA3, 29424, 29424/YA3, 29424J, 29426/YA3, 29326/YA3, 29328/YA3, 29428/YA3
29428J, 29330/YA3, 29430/YA3, 29332/YA3, 29432/YA3, 29334/YA3, 29434/YA3, 29336/YA3, 29436/YA3, 29436J, 29338/YA3, 29438/YA3, 29340/YA3, 29440/YA3, 29244/YA3, 29348/YA3
29448/YA3, 29252M/YA3, 29352, 29452, 29256, 29356, 29260, 29360, 29264, 29464, 29268/YA3
29468, 29372/YA3, 29472, 29280, 29380, 29480, 29284/YA3, 29488EM/YA3, 292/500/YA3, 294/500
292/530, 292/560, 294/600, 292/630YA3, 294/670, 292/710/YA3, 294/750YA3

Thrust Tapered Roller Bearing:
99440(9019440), 91742(19742), 91742DS(219742), 91748/YA(219748), 99452(9019452), 91754(19954), 99456(9019456), 99464(9019464), 99476(9019476), 917/1290(197/1290)

Thrust cylindrical roller bearing:
81722, 40W-87322X3, 89422X2, 81122, 81222, 81724, 81124, 81224, 89324, KIW-89126X2, KOW-8726X2, 81226, KIW-81130, 87430X2, 81130, 81730, 81230, KIW-81136, 81836, 89436, 81140/YA, 89448, 89352DH, 81757DH, 89460DH, 81184, 81192, 812/500, 872/530, 812/560, 817/600, 872/670, 871/710, 891/800, 871/850, 972/900, 872/1060, 817/1180DH, 871/1180, 872/1320

 

thrust roller bearing
bearing type Size(mm) W.T.
(kg)
old type new type OD ID H
691/1320   1540 1320 175 480
9 0571 /600 292/600 800 600 122 172
9 0571 /630   850 630 132 188
75492/670H 827/670 ZW 900 670 103 198
D75491/1180 871/1180 1400 1180 100 308
7549/850 871/850 1000 850 67 97.1
9 0571 /670   900 670 140 300
9 0571 /800   1060 800 155 323
D75492/900 872/900 ZW/P5 1180 900 125 386
9 0571 /1060   1400 1060 206 824
  292/1620 1860 1620 150 552
  293/800 1180 800 230 761
9 0571 /500 294/500 870 500 224 520
90694/500   870 500 224 520
  294/530 920 530 236 573
  294/710 1220 710 308 1400
9 0571 /750E 294/750 1280 750 315 1560

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Rolling Body: Roller Bearings
The Number of Rows: Single
Outer Dimension: 50mm-2000mm
Material: Bearing Steel
Spherical: Non-Aligning Bearings
Load Direction: Thrust Bearing
Samples:
US$ 600/Piece
1 Piece(Min.Order)

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Customization:
Available

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Customized Request

tapered roller bearing

How do Tapered Roller Bearings Contribute to the Efficiency of Automotive Wheel Hubs?

Tapered roller bearings play a crucial role in enhancing the efficiency and performance of automotive wheel hubs. They are specifically designed to handle both radial and axial loads, making them ideal for supporting the weight of the vehicle, providing smooth rotation, and ensuring safe and reliable operation. Here’s how tapered roller bearings contribute to the efficiency of automotive wheel hubs:

  • Load Distribution:

Automotive wheel hubs experience a combination of radial and axial loads due to the vehicle’s weight, acceleration, braking, and cornering forces. Tapered roller bearings efficiently distribute these loads, preventing localized stress concentrations and ensuring uniform load sharing across the bearing components.

  • Smooth Rotation:

Tapered roller bearings enable smooth and low-friction rotation of the wheel hub around the axle. This minimizes rolling resistance, leading to improved fuel efficiency and reduced energy consumption.

  • Axial Load Handling:

During cornering and steering maneuvers, automotive wheel hubs encounter axial loads. Tapered roller bearings are designed to handle these axial loads without compromising their ability to carry radial loads, ensuring stable and controlled vehicle handling.

  • Reduced Friction and Wear:

The tapered geometry and precision design of the rollers and raceways in these bearings minimize friction between components. This results in reduced wear, lower heat generation, and extended bearing life, contributing to long-term efficiency.

  • Reliable Performance:

Tapered roller bearings are known for their durability and resistance to wear and fatigue. They maintain their performance even under harsh operating conditions, ensuring consistent and reliable wheel hub operation.

  • Enhanced Safety:

The efficiency of tapered roller bearings directly impacts the vehicle’s stability and control. Properly functioning bearings prevent issues like wheel wobbling, uneven tire wear, and compromised steering, contributing to safe driving conditions.

  • Easy Replacement:

When maintenance or replacement is required, tapered roller bearings can be easily installed and removed. This simplifies the servicing process and reduces vehicle downtime.

  • Reduced Maintenance Costs:

The long service life and reliability of tapered roller bearings minimize the need for frequent maintenance and replacement, reducing overall maintenance costs for the vehicle owner.

  • Optimized Performance:

Efficient wheel hubs with properly functioning tapered roller bearings lead to improved vehicle performance, including better acceleration, braking, handling, and overall drivability.

Overall, tapered roller bearings contribute to the efficiency and effectiveness of automotive wheel hubs, enhancing vehicle performance, safety, and longevity.

cylindrical roller bearing

How do cylindrical roller bearings perform in high-speed or high-temperature environments?

Cylindrical roller bearings are designed to perform reliably in high-speed or high-temperature environments, although their performance may be influenced by various factors. Let’s explore how cylindrical roller bearings perform under these conditions:

  • High-Speed Environments:

In high-speed environments, cylindrical roller bearings are subjected to increased centrifugal forces and higher operating temperatures. To accommodate these conditions, several design features are employed:

  • Cage Design:

Cylindrical roller bearings intended for high-speed applications often feature optimized cage designs. The cage, or retainer, holds the cylindrical rollers in position and prevents excessive friction and heat generation. Cages made of lightweight materials such as phenolic resin or engineered plastics help reduce inertia and minimize cage wear at high speeds.

  • Roller and Raceway Geometry:

The roller and raceway profiles are designed to minimize sliding friction and ensure proper roller guidance. Special attention is given to the surface finish and precision of these components to reduce friction and minimize heat generation. Additionally, high-speed cylindrical roller bearings may have specific modifications, such as optimized roller end profiles and surface coatings, to further enhance their performance in high-speed applications.

  • Lubrication:

Proper lubrication is crucial in high-speed environments to reduce friction, dissipate heat, and prevent premature wear. High-speed cylindrical roller bearings often require lubricants with specific properties, such as low viscosity and excellent thermal stability, to ensure effective lubrication under high-speed conditions. Lubrication methods, such as oil-air lubrication or oil mist lubrication, may be employed to provide sufficient lubricant supply to the bearing at high speeds.

  • High-Temperature Environments:

When operating in high-temperature environments, cylindrical roller bearings face challenges related to elevated temperatures and potential thermal expansion. To address these challenges, the following considerations are taken into account:

  • Bearing Materials:

High-temperature cylindrical roller bearings are often made from heat-resistant materials that can withstand elevated temperatures without compromising their mechanical properties. Common materials include high-temperature steels, heat-resistant alloys, or ceramics. These materials offer improved dimensional stability and resistance to thermal expansion, ensuring the bearing’s performance and longevity.

  • Lubrication:

Proper lubrication becomes even more critical in high-temperature environments. Lubricants with high-temperature stability, such as synthetic oils or greases specifically formulated for high temperatures, are used to maintain adequate lubrication properties and prevent premature lubricant degradation. Lubrication intervals may need to be adjusted to ensure sufficient lubricant replenishment under high-temperature conditions.

  • Clearance and Preload:

In high-temperature environments, the bearing’s internal clearance or preload may be adjusted to compensate for thermal expansion. Proper clearance or preload selection helps maintain the desired operating conditions and prevents excessive bearing play or preload loss due to thermal effects.

It’s important to note that the specific performance of cylindrical roller bearings in high-speed or high-temperature environments can vary depending on factors such as the bearing size, design, operating conditions, and the presence of additional cooling or heat dissipation measures. Consulting bearing manufacturers’ recommendations and considering the application requirements are crucial for selecting the appropriate cylindrical roller bearings for high-speed or high-temperature applications.

cylindrical roller bearing

Can you explain the design and structure of cylindrical roller bearings?

Cylindrical roller bearings have a specific design and structure that enables them to handle high radial loads and moderate thrust loads. Let’s explore the key components and features of cylindrical roller bearings:

  • Inner and Outer Rings:

The inner and outer rings of cylindrical roller bearings are typically made of high-quality bearing steel. The inner ring is mounted on the rotating shaft, while the outer ring is usually mounted in a stationary housing. The rings are precision-machined with raceways that serve as the contact surfaces for the cylindrical rollers.

  • Cylindrical Rollers:

Cylindrical rollers are the main load-carrying components of the bearing. They are cylindrical in shape and have a high length-to-diameter ratio. The rollers are precision-ground to ensure close tolerances and uniform size distribution. The large contact area between the rollers and the raceways allows for efficient load distribution and reduced stresses.

  • Cage:

A cage, also known as a separator, is used to keep the cylindrical rollers evenly spaced and prevent them from coming into contact with each other. The cage is typically made of steel or other materials such as brass or polyamide (nylon). It provides guidance and retains the rollers in position during operation, ensuring smooth rolling motion and preventing roller skewing or jamming.

  • Flanges:

Cylindrical roller bearings may have flanges on the inner or outer rings or both. Flanges are raised edges or shoulders that provide axial guidance and help in locating the bearing in the axial direction. The presence of flanges can also improve the overall rigidity and axial load-carrying capacity of the bearing.

  • Internal Clearance:

The internal clearance of cylindrical roller bearings refers to the space between the rollers and raceways when there is no external load applied. It affects the bearing’s thermal expansion, running accuracy, and ability to accommodate misalignment or axial displacement. Different levels of internal clearance are available to suit specific application requirements.

  • Lubrication:

Cylindrical roller bearings require proper lubrication to minimize friction, reduce wear, and dissipate heat generated during operation. Lubrication helps to maintain the separation between the rolling elements and raceways, preventing metal-to-metal contact and minimizing the risk of premature failure. Common lubrication methods include grease lubrication and oil lubrication.

  • Sealing and Protection:

Cylindrical roller bearings can be equipped with various types of seals or shields to prevent the ingress of contaminants and retain lubrication. These seals and shields help to extend the bearing’s service life and maintain its performance by providing protection against moisture, dust, and other external factors that could cause damage or deterioration.

Overall, the design and structure of cylindrical roller bearings allow them to efficiently handle radial loads and moderate thrust loads. The combination of inner and outer rings, cylindrical rollers, cage, flanges, internal clearance, lubrication, and sealing work together to provide reliable and smooth rotational motion in machinery applications.

China manufacturer Large-Size Thrust Cylindrical Roller Bearing with High Precision (871/850)   bearing engineeringChina manufacturer Large-Size Thrust Cylindrical Roller Bearing with High Precision (871/850)   bearing engineering
editor by CX 2024-04-17