Product Description
|
Bearing No. |
Weight |
UCP |
UCF |
UCT |
UCFL |
UCPA |
UCFA |
UCPH |
|
KG |
||||||||
|
UC201 |
0.16 |
UCP201 |
UCF201 |
UCT201 |
UCFL201 |
UCPA201 |
UCFA201 |
UCPH201 |
|
UC202 |
0.18 |
UCP202 |
UCF202 |
UCT202 |
UCFL202 |
UCPA202 |
UCFA202 |
UCPH202 |
|
UC203 |
0.19 |
UCP203 |
UCF203 |
UCT203 |
UCFL203 |
UCPA203 |
UCFA203 |
UCPH203 |
|
UC204 |
0.21 |
UCP204 |
UCF204 |
UCT204 |
UCFL204 |
UCPA204 |
UCFA204 |
UCPH204 |
|
UC205 |
0.29 |
UCP205 |
UCF205 |
UCT205 |
UCFL205 |
UCPA205 |
UCFA205 |
UCPH205 |
|
UC206 |
0.31 |
UCP206 |
UCF206 |
UCT206 |
UCFL206 |
UCPA206 |
UCFA206 |
UCPH206 |
|
UC207 |
0.49 |
UCP207 |
UCF207 |
UCT207 |
UCFL207 |
UCPA207 |
UCFA207 |
UCPH207 |
|
UC208 |
0.63 |
UCP208 |
UCF208 |
UCT208 |
UCFL208 |
UCPA208 |
UCFA208 |
UCPH208 |
|
UC209 |
0.68 |
UCP209 |
UCF209 |
UCT209 |
UCFL209 |
UCPA209 |
UCFA209 |
UCPH209 |
|
UC210 |
0.79 |
UCP210 |
UCF210 |
UCT210 |
UCFL210 |
UCPA210 |
UCFA210 |
UCPH210 |
|
UC211 |
1.04 |
UCP211 |
UCF211 |
UCT211 |
UCFL211 |
UCPA211 |
UCFA211 |
UCPH211 |
|
UC212 |
1.47 |
UCP212 |
UCF212 |
UCT212 |
UCFL212 |
UCPA212 |
UCFA212 |
UCPH212 |
|
UC213 |
1.73 |
UCP213 |
UCF213 |
UCT213 |
UCFL213 |
UCPA213 |
UCFA213 |
UCPH213 |
|
UC214 |
2.08 |
UCP214 |
UCF214 |
UCT214 |
UCFL214 |
UCPA214 |
UCFA214 |
UCPH214 |
|
UC215 |
2.25 |
UCP215 |
UCF215 |
UCT215 |
UCFL215 |
UCPA215 |
UCFA215 |
UCPH215 |
|
UC216 |
2.86 |
UCP216 |
UCF216 |
UCT216 |
UCFL216 |
UCPA216 |
UCFA216 |
UCPH216 |
|
UC217 |
3.42 |
UCP217 |
UCF217 |
UCT217 |
UCFL217 |
UCPA217 |
UCFA217 |
UCPH217 |
|
UC218 |
4.4 |
UCP218 |
UCF218 |
UCT218 |
UCFL218 |
UCPA218 |
UCFA218 |
UCPH218 |
|
Bearing No. |
Weight |
UCP |
UCF |
UCT |
UCFL |
UCPA |
UCFC |
UCPH |
|
kg |
||||||||
|
UC 305 |
0.45 |
UCP305 |
UCF305 |
UCT305 |
UCFL305 |
UCPA305 |
UCFC305 |
UCPH305 |
|
UC 306 |
0.57 |
UCP306 |
UCF306 |
UCT306 |
UCFL306 |
UCPA306 |
UCFC306 |
UCPH306 |
|
UC 307 |
0.72 |
UCP307 |
UCF307 |
UCT307 |
UCFL307 |
UCPA307 |
UCFC307 |
UCPH307 |
|
UC 308 |
1 |
UCP308 |
UCF308 |
UCT308 |
UCFL308 |
UCPA308 |
UCFC308 |
UCPH308 |
|
UC 309 |
1.3 |
UCP309 |
UCF309 |
UCT309 |
UCFL309 |
UCPA309 |
UCFC309 |
UCPH309 |
|
UC 310 |
1.67 |
UCP310 |
UCF310 |
UCT310 |
UCFL310 |
UCPA310 |
UCFC310 |
UCPH310 |
|
UC 311 |
2.1 |
UCP311 |
UCF311 |
UCT311 |
UCFL311 |
UCPA311 |
UCFC311 |
UCPH311 |
|
UC 312 |
2.62 |
UCP312 |
UCF312 |
UCT312 |
UCFL312 |
UCPA312 |
UCFC312 |
UCPH312 |
|
UC 313 |
3.19 |
UCP313 |
UCF313 |
UCT313 |
UCFL313 |
UCPA313 |
UCFC313 |
UCPH313 |
|
UC 314 |
3.88 |
UCP314 |
UCF314 |
UCT314 |
UCFL314 |
UCPA314 |
UCFC314 |
UCPH314 |
|
UC 315 |
4.68 |
UCP315 |
UCF315 |
UCT315 |
UCFL315 |
UCPA315 |
UCFC315 |
UCPH315 |
|
UC 316 |
5.5 |
UCP316 |
UCF316 |
UCT316 |
UCFL316 |
UCPA316 |
UCFC316 |
UCPH316 |
|
UC 317 |
6.67 |
UCP317 |
UCF317 |
UCT317 |
UCFL317 |
UCPA317 |
UCFC317 |
UCPH317 |
|
UC 318 |
7.5 |
UCP318 |
UCF318 |
UCT318 |
UCFL318 |
UCPA318 |
UCFC318 |
UCPH318 |
|
UC 319 |
8.8 |
UCP319 |
UCF319 |
UCT319 |
UCFL319 |
UCPA319 |
UCFC319 |
UCPH319 |
|
UC 320 |
10.94 |
UCP320 |
UCF320 |
UCT320 |
UCFL320 |
UCPA320 |
UCFC320 |
UCPH320 |
|
UC 322 |
14.5 |
UCP322 |
UCF322 |
UCT322 |
UCFL322 |
UCPA322 |
UCFC322 |
UCPH322 |
|
UC 324 |
18.75 |
UCP324 |
UCF324 |
UCT324 |
UCFL324 |
UCPA324 |
UCFC324 |
UCPH324 |
I have all the models you need, these are just some of them, please contact us now
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| Rows Number: | Multiple |
|---|---|
| Raceway: | Crowned Raceway |
| Material: | Bearing Steel |
| Bearing Block Model: | P |
| Payment Term: | 30% T/T Advanced, The Balanced Before The Shipment |
| Delivery Time: | 25 Days After Seller Receiving Deposit |
| Customization: |
Available
| Customized Request |
|---|

How to identify the size and specifications of a UCP bearing?
Identifying the size and specifications of a UCP bearing, also known as a pillow block bearing, requires examining various parameters and markings on the bearing itself or referring to manufacturer documentation. Here’s a detailed explanation of how to identify the size and specifications of a UCP bearing:
1. Bearing Markings: Start by inspecting the bearing for any markings or labels that provide information about its size, type, and specifications. Common markings may include the manufacturer’s logo or name, bearing model or part number, and any relevant standards or certifications. These markings can help identify the specific UCP bearing and provide a starting point for gathering further information.
2. Dimensions: Determine the dimensions of the UCP bearing, including the bore diameter (inner diameter), outer diameter, and overall width. These dimensions are typically specified in millimeters (mm) or inches (in). Measuring the bearing with calipers or using a ruler can help determine its size. Alternatively, the dimensions can be obtained from manufacturer catalogs, datasheets, or online resources.
3. Pillow Block Type: UCP bearings come in various pillow block types, such as UCP200 series or UCP300 series, which indicate different design variations and size ranges. The pillow block type is often indicated in the bearing model or part number. Identifying the specific series or type helps in selecting compatible components and determining the bearing’s load capacity and performance characteristics.
4. Load Capacity and Ratings: The load capacity and ratings of a UCP bearing are crucial specifications to consider for proper application. They indicate the maximum allowable radial and axial loads that the bearing can withstand. Load capacity information is typically provided by the manufacturer and can be found in bearing catalogs or technical documentation. It is important to ensure that the bearing’s load capacity meets the requirements of the application to prevent premature failure.
5. Lubrication: Determine the lubrication requirements of the UCP bearing. This includes identifying the recommended lubricant type, such as grease or oil, as well as the appropriate amount and frequency of lubrication. Lubrication information is often provided by the manufacturer and can be found in bearing documentation or technical specifications.
6. Sealing and Shielding: Check if the UCP bearing has any seals or shields to protect against contamination and retain lubrication. The type of seal or shield used can impact the bearing’s performance in different environments. Common seal types include rubber seals, metal shields, or labyrinth seals. The sealing arrangement may be indicated in the bearing model or part number, or it can be obtained from manufacturer documentation.
7. Manufacturer Documentation: Consult the manufacturer’s documentation, such as catalogs, datasheets, or technical manuals, for detailed information about the UCP bearing’s size, specifications, and performance characteristics. Manufacturer resources provide comprehensive information and ensure accurate identification of the bearing.
It’s important to note that the identification process may vary depending on the manufacturer and specific bearing model. If you encounter difficulties or require precise information, contacting the bearing manufacturer, distributor, or a knowledgeable expert in the field can provide further guidance and assistance in identifying the size and specifications of a UCP bearing.
Taking accurate measurements, referring to bearing markings, and utilizing manufacturer resources are key steps in correctly identifying and selecting the appropriate UCP bearing for a given application.

What are the signs of a failing UCP bearing?
A failing UCP bearing, also known as a pillow block bearing, can exhibit various signs and symptoms that indicate a potential problem. It’s important to recognize these signs early on to avoid further damage to the bearing and the machinery it supports. Here’s a detailed explanation of the common signs of a failing UCP bearing:
- Abnormal Noise: Unusual noises, such as grinding, scraping, clicking, or rumbling sounds, coming from the UCP bearing or the machinery it is installed in can indicate bearing failure. These noises may occur during operation or when the machinery is under load. Pay attention to any new or persistent noises that are not typical for the normal operation of the machinery.
- Excessive Vibration: A failing UCP bearing can cause increased vibration in the machinery. This vibration may be felt through the equipment or detected visually by observing excessive movement or shaking. Excessive vibration can lead to reduced performance, increased wear on other components, and potential safety hazards.
- Increased Temperature: If the UCP bearing is running at a higher temperature than usual, it can be a sign of bearing failure. Excessive heat can indicate increased friction, inadequate lubrication, or other issues with the bearing. Use caution when assessing the temperature and avoid touching hot surfaces directly.
- Reduced Performance: A failing UCP bearing can result in reduced performance of the machinery it supports. This can manifest as decreased efficiency, diminished output, or difficulty in achieving desired speeds or loads. The bearing’s inability to support the required operational demands can lead to performance issues in the machinery.
- Uneven or Excessive Wear: Inspect the UCP bearing for signs of wear or damage. Look for uneven wear patterns, pitting, scoring, or discoloration on the bearing surfaces. Excessive wear can indicate inadequate lubrication, contamination, misalignment, or other problems that can lead to bearing failure.
- Leakage or Contamination: If there is evidence of grease or lubricant leakage around the UCP bearing housing or seals, it may indicate a failing bearing. Additionally, the presence of contaminants, such as dirt, dust, or water, in or around the bearing can be a sign of compromised sealing or damage to the bearing’s protective barriers.
- Looseness or Excessive Play: A failing UCP bearing may exhibit looseness or excessive play when manually checking for movement. Excessive axial or radial play can indicate wear, misalignment, or internal damage within the bearing. This can result in decreased stability and compromised performance of the machinery.
If you observe any of these signs in your UCP bearing or the machinery it is installed in, it’s important to address the issue promptly. Continuing to operate with a failing UCP bearing can lead to further damage, increased downtime, and potential safety risks. It’s recommended to consult with a qualified technician, maintenance professional, or the bearing manufacturer’s technical support team for proper assessment, diagnosis, and replacement of the failing UCP bearing.
Remember that the signs of a failing UCP bearing may vary depending on the specific application, operating conditions, and other factors. Regular inspection, maintenance, and monitoring of the UCP bearings can help identify potential issues early on and prevent costly failures.

What is a UCP bearing?
A UCP bearing, also known as a pillow block bearing, is a type of mounted bearing commonly used in various industrial applications. It is designed to provide support and facilitate rotational or linear motion in machinery and equipment. Here’s a detailed explanation:
A UCP bearing consists of a bearing unit and a housing. The bearing unit typically includes a rolling element bearing, such as a ball bearing or a roller bearing, which enables smooth and low-friction motion. The housing, often made of cast iron or pressed steel, serves as a support structure for the bearing unit and provides protection against contaminants and external elements.
The term “UCP” stands for “Unit with Cast Iron Pillow Block,” referring to the common use of cast iron housings in UCP bearings. The housing is typically shaped like a pillow or block, with a flat base and mounting holes for easy installation and attachment to a machine or structure.
UCP bearings are widely used in various applications, including conveyor systems, agricultural machinery, industrial equipment, HVAC systems, and more. They offer several advantages:
- Easy Installation: UCP bearings are designed for easy installation and mounting. The housing’s flat base and pre-drilled mounting holes allow for straightforward attachment to a support structure or machine.
- Simple Maintenance: UCP bearings are relatively easy to maintain. They often feature removable bearing units, allowing for inspection, lubrication, and replacement when necessary. This simplifies maintenance tasks and reduces downtime.
- Load Support: UCP bearings are capable of supporting different loads, including radial and axial loads. The specific load capacity depends on the type and size of the bearing unit used within the UCP assembly.
- Protection and Contamination Resistance: The housing of a UCP bearing provides protection to the bearing unit against contaminants, moisture, and other external elements. This helps extend the bearing’s service life and maintain its performance.
- Alignment Compensation: UCP bearings often have self-aligning capabilities, allowing them to compensate for minor misalignments between the shaft and the housing. This feature helps reduce stress and wear on the bearing, enhancing its reliability and longevity.
UCP bearings are available in various sizes, configurations, and bearing types to accommodate different application requirements. It is important to select the appropriate UCP bearing based on factors such as load capacity, operating conditions, and environmental considerations.
In summary, a UCP bearing, or pillow block bearing, is a mounted bearing unit that provides support and facilitates motion in industrial applications. With their easy installation, maintenance convenience, load support, protection, and alignment compensation features, UCP bearings are widely used to ensure reliable and efficient operation of machinery and equipment.


editor by CX 2024-05-14