Product Description
Agricultural machinery insert uc ucf uct ucfl ucp pillow block bearing 211 bearing seat house
Pillow block bearing is a type of bearing unit that combines an outer spherical bearing with a bearing seat. Most outer spherical bearings are made of spherical outer diameter and installed together with bearing seats with spherical inner holes, with diverse structural forms, good universality and interchangeability. Pillow blocks are widely used in agriculture machines, conveyor systems, construction machines, etc.
| Bearing material | Chrome steel(GCR15) |
| Housing material | Cast iron(HT200) |
| Housing color | Green, blue, gray, or according to customer requirement |
| Brand | ASAHI, PSK, HOJE, or OEM |
| Structure | Pillow Block Bearing |
| Design | Standard Design & NTN,NSK,ASAHI Design |
| Seals Type | Double Seals & Triple Lips Seals & F Seals & Four-star seal |
| Place of Origin | ZheJiang , China |
| steel ball | G10,G16 |
| Coordination for Bearing & Housing | H7 & J7& K7 |
| Packing | 1. plastic bag+single box+carton+pallet 2. According to Customer’s Requirements |
| Noise | Z1, Z2, Z3, Z4 |
| Sample | Free Sample |
| quality | ABEC-1(P0), Z1V1, Z2V2 |
Classify
The bearing seat is generally formed by casting or stamping. Commonly matched cast bearing seats include vertical seat (P), narrow vertical seat (PA), high center vertical seat (PH), square seat (F), convex square seat (FS), convex circular seat (FC), CZPT seat (FL), annular seat (C), slider seat (T), suspension seat (HA), adjustable CZPT seat (FA), and suspension bearing seat (FB); The commonly used stamped bearing seats include circular stamped seats (PF), CZPT stamped seats (PFL), triangular stamped seats (PFT), and vertical stamped seats (PP).
Our Advantages
PRODUCT ADVANTAGES
1.Low noise: multiple experiments CZPT below 20 decibels
2.High precision: precision manufacturing processes achieve ultra-high precision
3.High quality: High temperature and corrosion resistance to ensure bearing performance
4.High hardness: maintained at 58-65 ° with excellent wear resistance
5.With optimized internal assembly and high-speed polymer cages, reducing bearing energy consumption
6.Heavier and thicker bearing housing
COMPANY ADVANTAGES
1.Multiple machine inspections to strictly ensure bearing quality
2.Integrated industry and trade, precise docking, allowing for on-site factory visits
3.Collaborated with 500 bearing manufacturers, with complete models
4.Our aim is to operate with integrity
5.Provide 24/7 service and free samples
6. Any requirement for Non-standard bearings is Easily Fulfilled by us
More Products
Bearings with Plummer block housing series as follows: UCP2, NAP2, UKP2+H, SBP2G, SAP2G, UCPX, UCP3, UCPH2, UCPA2, SAPP2, SBPP2
Bearings with square housing series are as follows: UCF2, UCF3.
Bearings with rhombus housing series as
follows: UCFL2,UCFLX,UCFL3,SALF2G,SBLF2G,SALFTC2G,SBLFTC2G,SBPFL2,SAPFL2
Bearings with circle housing series as follows: UCFC2,SBPF2,SAPF2,SBPFT2,SAPFL2
Bearings with the slide set housing series as follows: UCT2
Other bearings with housing Units as UCC2, UCFB2, UCFA2, UCHA2
| Pillow Block Bearing | ||||||||
| 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 |
Pillow block bearing Application:
Agricultural machinery, metallurgical machinery, textile machinery, printing machinery, conveyors, construction machinery, motorcycle motor pump, air conditioner, sewing machine, fitness equipment, washing machine, office equipment.
Please send us an inquiry or message and leave your other contact information, such as phone number, Whatsapp account or WeChat account, we will contact you as soon as possible and provide the detailed information you need.
Welcome to our company and contacting us.
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| Aligning: | Non-Aligning Bearing |
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| Separated: | Separated |
| Feature: | Low Temperature, Corrosion Resistant, High Temperature, High Speed |
| Samples: |
US$ 0.5/Piece
1 Piece(Min.Order) | Order Sample Chrome steel
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| Customization: |
Available
| Customized Request |
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Shipping Cost:
Estimated freight per unit. |
about shipping cost and estimated delivery time. |
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| Payment Method: |
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Initial Payment Full Payment |
| Currency: | US$ |
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| Return&refunds: | You can apply for a refund up to 30 days after receipt of the products. |
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How long do UCP bearings last?
The lifespan of UCP bearings, also known as pillow block bearings, can vary depending on several factors. Here’s a detailed explanation of the factors that can influence the longevity of UCP bearings:
- Operating Conditions: The operating conditions play a significant role in the lifespan of UCP bearings. Factors such as the load magnitude, speed, temperature, and environmental conditions can impact the bearing’s performance and durability. Bearings operating under heavy loads, high speeds, or in harsh environments may experience increased wear and fatigue, potentially reducing their lifespan.
- Maintenance and Lubrication: Proper maintenance practices, including regular inspection, cleaning, and lubrication, can significantly extend the lifespan of UCP bearings. Adequate lubrication forms a protective film between the rolling elements and the bearing races, reducing friction and wear. Insufficient or improper lubrication can lead to increased friction, heat generation, and premature failure of the bearings.
- Quality and Material: The quality and material composition of UCP bearings can influence their lifespan. Bearings made from high-quality materials, such as stainless steel or chrome steel, are generally more resistant to wear, corrosion, and fatigue. Careful selection of UCP bearings from reputable manufacturers, considering factors like load ratings and performance specifications, can contribute to longer bearing life.
- Installation and Alignment: Proper installation and alignment of UCP bearings are critical for their longevity. Ensuring correct shaft and housing fits, accurate alignment of the bearing components, and appropriate tightening of locking mechanisms help distribute loads evenly and prevent excessive stress or misalignment. Improper installation can lead to premature wear, increased friction, and reduced bearing life.
- Application-Specific Factors: The specific application in which UCP bearings are used can influence their lifespan. Factors like shock loads, vibration, contamination, and the presence of corrosive substances can affect bearing performance and durability. Adequate protection measures, such as seals or shields, can help mitigate these factors and prolong bearing life.
Given these factors, it can be challenging to provide an exact lifespan for UCP bearings. In some applications, UCP bearings can last for many years or even decades if properly maintained and operated within their specified limits. However, in demanding or unfavorable conditions, the lifespan of UCP bearings may be shorter, requiring more frequent inspection and replacement.
It’s important to monitor the condition of UCP bearings regularly and look for signs of wear, damage, or performance degradation. Any unusual noise, excessive vibration, increased temperature, or other signs of bearing failure should be addressed promptly to avoid further damage to the bearings and the machinery they support.
Consulting the manufacturer’s documentation, maintenance guidelines, or seeking advice from bearing experts can provide more specific information regarding the expected lifespan of UCP bearings in a particular application or operating environment.

How to choose the right UCP bearing for my machinery?
Choosing the right UCP bearing, also known as a pillow block bearing, for your machinery is crucial to ensure optimal performance, reliability, and longevity. Here’s a detailed explanation of the factors to consider when selecting a UCP bearing:
- Load Requirements: Evaluate the load requirements of your machinery, including the magnitude and direction of the loads. Consider factors such as radial loads, axial loads, and moment loads. Ensure that the UCP bearing you choose has a load capacity that is suitable for the anticipated loads in your application.
- Shaft Diameter: Determine the shaft diameter of your machinery and select a UCP bearing with a corresponding bore size. The bore size of the UCP bearing should match the shaft diameter to ensure proper fit and alignment. It’s important to measure the shaft accurately and consider any potential expansion or misalignment during operation.
- Operating Conditions: Assess the operating conditions of your machinery, including factors such as speed, temperature, and environmental conditions. Choose a UCP bearing that is designed to withstand the anticipated operating conditions. Consider factors like maximum speed rating, temperature range, lubrication requirements, and resistance to contaminants or moisture.
- Sealing and Protection: Depending on the application requirements, consider whether additional sealing or protection is necessary for the UCP bearing. Seals or shields can help prevent the ingress of dirt, dust, or contaminants, prolonging the bearing’s life and reducing maintenance needs. Choose a UCP bearing with appropriate sealing options, such as rubber seals or metal shields, based on the specific environmental conditions.
- Alignment Capability: Evaluate the alignment capabilities of the UCP bearing. Some UCP bearings have self-aligning features that can compensate for minor shaft misalignment. If your machinery is prone to misalignment or has flexible shafts, consider choosing a UCP bearing with self-aligning properties to minimize excessive loads and premature wear.
- Manufacturer and Quality: Select UCP bearings from reputable manufacturers known for their quality and reliability. Consider manufacturers with a strong track record in bearing production and a wide range of product offerings. Research customer reviews, consult with industry experts, and consider the manufacturer’s reputation for producing durable and high-performance UCP bearings.
By considering these factors and choosing a UCP bearing that aligns with your machinery’s specific requirements, you can ensure optimal performance and minimize the risk of premature failures or downtime. It’s recommended to consult with bearing specialists, engineers, or the manufacturer’s technical support team for additional guidance and assistance in selecting the most suitable UCP bearing for your machinery.
Remember that the specific requirements for UCP bearings may vary depending on the application, industry, and machinery specifications. Always refer to the manufacturer’s documentation, specifications, and guidelines for the most accurate and detailed information.

How to install a UCP bearing?
Installing a UCP bearing, also known as a pillow block bearing, requires careful attention to ensure proper alignment and secure attachment. Here’s a detailed explanation of the steps involved in installing a UCP bearing:
- Gather the necessary tools: Before starting the installation process, gather the tools you’ll need, including a wrench or socket set, a torque wrench (if applicable), a hammer or mallet, and any additional tools specified by the bearing manufacturer.
- Prepare the mounting surface: Ensure the mounting surface is clean, flat, and free of any debris or contaminants. If necessary, use a cleaning agent and a cloth to remove dirt or grease from the surface. This will provide a stable foundation for the UCP bearing.
- Inspect the bearing and housing: Before installation, inspect the UCP bearing and the housing for any damage or defects. Check for smooth rotation of the bearing and ensure the housing is free from cracks or deformations. If any issues are found, replace the bearing or housing before proceeding with the installation.
- Apply lubrication: Depending on the bearing type and manufacturer’s recommendations, apply a suitable lubricant to the bearing’s inner race or rolling elements. This will help reduce friction and ensure smooth operation.
- Position the bearing: Place the UCP bearing into the housing, ensuring it is properly aligned. The bearing should fit snugly into the housing, with the mounting holes aligned. Take care not to damage the bearing or housing during this step.
- Secure the bearing: Once the bearing is properly positioned, use the provided fasteners (typically bolts or set screws) to secure the bearing to the mounting surface. Tighten the fasteners gradually and evenly, following the manufacturer’s recommended torque specifications. Avoid over-tightening, as it can damage the bearing or cause excessive friction.
- Check alignment: After securing the UCP bearing, check its alignment with the connected shaft or other components. Ensure that the bearing is aligned properly to prevent excessive loads or misalignment issues. Make any necessary adjustments to achieve proper alignment.
- Verify smooth rotation: Rotate the connected shaft or components to verify that the UCP bearing allows smooth and unhindered motion. Ensure there are no abnormal noises, sticking, or binding. If any issues are detected, recheck the installation or consult the bearing manufacturer for guidance.
- Final checks: Once the UCP bearing is installed, perform a final inspection to ensure everything is secure and in the correct position. Double-check the tightness of the fasteners and verify that there is no excessive play or movement in the bearing assembly.
It’s important to note that the above steps provide a general guideline for installing UCP bearings. The specific installation process may vary depending on the bearing manufacturer’s instructions and any unique requirements of your application. Always refer to the manufacturer’s documentation and guidelines for the most accurate and detailed installation instructions.
In summary, installing a UCP bearing involves preparing the mounting surface, inspecting the bearing and housing, applying lubrication, positioning and securing the bearing, checking alignment, verifying smooth rotation, and conducting final checks to ensure a proper installation.


editor by CX 2024-04-09