Product Description
Different types of bearing housings
1)Pillow blocks – these include UCP, HCP, UCLP, UKP, UCPX, and UKPX.
These mounted bearings are used when support for a rotating shaft axis is required. Their design enables them to support the shaft in operations where the mounting surface is parallel to the shaft axis.
2)Flange type- includes UCF, HCF, UKF, UCFX, UKFX, UCFU, UCFC, UKFC, UCFS, UCFL, UKFL, UCFT.
The flange type bearing housing comes in various shapes and styles such as square, round, and rhombus flange types.
3)Take-up units type – UCT, HCT, and UKT.
These bearing housings have an inner surface which is concave sphered hence the bearing used has a convex sphered outer surface. They are designed to permit moderate initial misplacement. Widely used in conveyor chains and conveyor belts. A sliding slot at the side of the housing facilitates the free movement of the unit.
4)Cartridge type – UCC, HCC, and UKC.
This type of bearing housing has a cylindrical outer perimeter hence the bearing outer bore is spherical. The entire unit allows free movement in the axial direction and is self-aligning. This type can be used as free side bearings for long shafts because they are capable of accommodating shaft expansion or contraction due to temperature differences. Also suitable where there is adjustment of the axial direction is required.
5)Light duty types SAFD, SBFD, SAFW, SBFW, SALF, and SBLF.
6)Pillow block Materials: Normal Steel,Stainless Steel,Plastic
Price is very competitive,Quality is stable. pls inquiry.
FAQ
Q: Where to find Other bearings ?
Discover the Homepage—–> Products
Q: HOW TO CHOOSE A BEARING?
To properly choose a ball bearing, the important thing is to take into account several parameters:
1. Its application
Bearings are everywhere and therefore their applications are varied:
- – Agriculture
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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!
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Aligning: Non-Aligning Bearing Separated: Unseparated Feature: Vacuum, Magnetically, Low Temperature, Corrosion Resistant, High Temperature, High Speed Rows Number: Single Raceway: Deep Groove Raceway Material: Stainless Steel Samples: US$ 1/Piece
1 Piece(Min.Order)|
Request SampleCustomization: Available|
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How do UCP bearings handle misalignment?
UCP bearings, also known as pillow block bearings, are designed to handle certain degrees of misalignment between the shaft and the bearing housing. Here’s a detailed explanation of how UCP bearings handle misalignment:
1. Self-Aligning Capability: UCP bearings are often designed with self-aligning features that allow them to accommodate misalignment. This means that the bearing has some flexibility to adjust and adapt to slight angular errors or misalignments between the shaft and the housing. The self-aligning capability helps prevent excessive stress and uneven loading on the bearing, which can lead to premature wear or failure.
2. Spherical Outer Rings: Many UCP bearings incorporate spherical outer rings, which can tilt or swivel within the bearing housing. This spherical design allows the bearing to align itself with the misaligned shaft, compensating for angular errors. The spherical outer ring can rotate and pivot to some extent, reducing the axial and radial forces caused by misalignment and ensuring a more uniform distribution of loads on the bearing.
3. Ball-and-Socket Configuration: Some UCP bearings utilize a ball-and-socket configuration, where the inner ring of the bearing has a convex shape that fits into a corresponding concave shape in the housing. This configuration provides additional flexibility and misalignment compensation. The ball-and-socket design allows the bearing to accommodate misalignment in multiple directions, providing improved performance in applications where misalignment is prevalent.
4. Flexible Mounting Options: UCP bearings offer flexible mounting options that facilitate misalignment compensation. The bearing housing typically has multiple holes or slots for attachment to the equipment or structure. This allows for slight adjustments and repositioning of the bearing during installation, helping to correct minor misalignment between the shaft and the housing.
While UCP bearings can handle certain degrees of misalignment, it’s important to note that excessive or prolonged misalignment can still negatively impact bearing performance and lifespan. The self-aligning features of UCP bearings are intended to compensate for minor misalignments that can occur during operation, but they are not a substitute for proper alignment during installation.
Proper installation and alignment of UCP bearings are essential to maximize their misalignment-handling capabilities. It’s recommended to follow the manufacturer’s guidelines for alignment procedures, including checking and adjusting the shaft and housing alignment using appropriate measurement tools. Correct alignment helps minimize stress, reduce friction, and promote even load distribution, contributing to improved bearing performance and longevity.
If significant misalignment is anticipated in an application, it may be necessary to consider specialized bearing designs, such as spherical roller bearings or self-aligning ball bearings, which are specifically engineered to handle higher degrees of misalignment.

How to replace a UCP bearing?
Replacing a UCP bearing, also known as a pillow block bearing, requires careful handling and following specific steps to ensure a successful replacement. Here’s a detailed explanation of the process to replace a UCP bearing:
- Gather the necessary tools: Before starting the replacement, gather the tools you will need, including a wrench or socket set, a puller or press (if needed), cleaning materials, and the replacement UCP bearing.
- Prepare the work area: Ensure that the work area is clean and well-lit. If the machinery is still operational, shut it down and follow proper lockout/tagout procedures to prevent accidental startup during the replacement process.
- Remove any obstructions: If there are any covers, guards, or other components obstructing access to the UCP bearing, remove them carefully to expose the bearing housing.
- Loosen the locking mechanism: Use a wrench or socket set to loosen the locking mechanism that secures the UCP bearing in place. This could be a set screw, collar, or other locking device. Follow the manufacturer’s instructions to identify and release the locking mechanism.
- Remove the UCP bearing: Once the locking mechanism is loosened, the UCP bearing can be removed from the housing. Apply gentle force if necessary, but avoid excessive impacts or prying that may damage the bearing or the housing.
- Clean the housing: Thoroughly clean the housing to remove any dirt, debris, or old lubricant. Use appropriate cleaning materials and ensure that the housing is dry before installing the new UCP bearing.
- Inspect and prepare the replacement bearing: Before installing the new UCP bearing, inspect it for any signs of damage or defects. Ensure that the bore and outer surfaces are clean and free from any contaminants. If necessary, apply a suitable lubricant to the bearing per the manufacturer’s recommendations.
- Install the new UCP bearing: Carefully position the new UCP bearing into the housing, aligning the bore with the shaft. Apply even pressure to press the bearing into place, ensuring it is seated securely. Follow the manufacturer’s instructions for any specific installation requirements, such as tightening torque for the locking mechanism.
- Secure the locking mechanism: Once the new UCP bearing is installed, tighten the locking mechanism to secure it in place. Again, follow the manufacturer’s instructions for the specific tightening procedure and torque value.
- Reinstall any obstructions: Put back any covers, guards, or components that were removed earlier to restore the machinery to its original configuration.
- Test and verify: After the replacement is complete, test the machinery to ensure proper operation of the new UCP bearing. Monitor for any unusual noise, vibration, or other issues that may indicate incorrect installation or other problems.
It’s important to note that the specific steps for replacing a UCP bearing may vary depending on the machinery and the manufacturer’s recommendations. Always refer to the manufacturer’s documentation, maintenance manuals, or technical support for the most accurate and detailed instructions for your specific UCP bearing and machinery.
Additionally, if you are unsure or uncomfortable with performing the replacement yourself, it’s recommended to seek the assistance of a qualified technician or maintenance professional to ensure the proper installation and functioning of the UCP bearing.

What are the applications of UCP bearings?
UCP bearings, also known as pillow block bearings, find widespread applications in various industries and machinery. These bearings are designed to provide support, facilitate motion, and reduce friction. Here’s a detailed explanation of their applications:
- Conveyor Systems: UCP bearings are commonly used in conveyor systems, where they support rotating components such as rollers or pulleys. They ensure smooth and reliable motion, allowing for efficient material handling in industries like manufacturing, logistics, and mining.
- Agricultural Machinery: UCP bearings are utilized in agricultural machinery, including harvesters, tractors, and irrigation systems. They help support rotating shafts, gears, and other components, enabling proper functioning and smooth operation in demanding agricultural environments.
- Industrial Equipment: UCP bearings are extensively employed in a wide range of industrial equipment, such as pumps, fans, compressors, and motors. They provide support and facilitate rotational or linear motion, ensuring reliable and efficient operation in industrial processes.
- HVAC Systems: UCP bearings are used in heating, ventilation, and air conditioning (HVAC) systems. They support the rotating components of fans, blowers, and motors, allowing for efficient air circulation and temperature control in residential, commercial, and industrial buildings.
- Printing Machinery: UCP bearings are utilized in printing machinery, including printing presses and paper handling equipment. They enable smooth and precise motion of printing cylinders, rollers, and other components, ensuring high-quality printing results and reliable performance.
- Packaging Machinery: UCP bearings find applications in packaging machinery, such as filling machines, labeling machines, and sealing machines. They support the moving parts of these machines, allowing for accurate and consistent packaging operations in industries like food and beverage, pharmaceuticals, and consumer goods.
- Material Handling Equipment: UCP bearings are used in various material handling equipment, such as forklifts, palletizers, and conveyors. They provide support for rotating or linear motion components, enabling efficient movement, lifting, and transportation of materials in warehouses, distribution centers, and manufacturing facilities.
- Mining Equipment: UCP bearings are employed in mining equipment, including crushers, screens, and conveyor systems. They support the heavy-duty components used in mining operations, ensuring reliable performance and durability in harsh and demanding mining environments.
- Construction Machinery: UCP bearings are utilized in construction machinery, such as excavators, loaders, and cranes. They provide support for rotating and lifting components, enabling precise and smooth operation in construction sites and infrastructure projects.
- Power Transmission Systems: UCP bearings play a vital role in power transmission systems, including gearboxes, belt drives, and chain drives. They support the shafts and rotating elements, facilitating the transfer of power and motion between different parts of the system.
These are just some examples of the applications of UCP bearings. Their versatility and ability to provide reliable support and motion control make them suitable for a wide range of industries, including manufacturing, transportation, agriculture, mining, construction, and more.
In summary, UCP bearings find applications in numerous industries and machinery, contributing to the smooth and reliable operation of various systems, equipment, and processes.


editor by CX 2024-01-09