About Radial Spherical Plain Bearing
Product Details
Finish | Chrome plated |
Material | Stainless Steel |
No of Row | Single Row |
Min. Thickness | 8 mm |
Min. Outside Diameter | 6 mm |
Min. Bore Size | 10 mm |
Max. Thickness | 30 mm |
Max. Outside Diameter | 200 mm |
Max. Bore Size | 80 mm |
Precision Engineering for Demanding EnvironmentsBuilt to perform in challenging conditions, our Radial Spherical Plain Bearing excels in environments requiring high load capability and misalignment compensation. Its robust structure and enhanced surface finish protect against corrosion, making it ideal for use in hydraulic systems, agricultural mechanisms, and construction equipment. Every unit is crafted to meet industry standards, ensuring peace of mind for every operator.
Superior Material and Finish for Extended LongevityUtilizing GCr15 bearing steel and finished with either phosphating or chrome plating, these bearings offer enhanced resistance against wear and corrosion. The double-sealed design and grease lubrication system provide additional protection and lower maintenance requirements, ensuring smooth operation over a wide range of temperatures.
Reliable Performance Across IndustriesWith a dynamic load rating of up to 29 kN and static load rating of 85 kN, these bearings are trusted by professionals in hydraulic, construction, and agricultural sectors. Their spherical contact surface allows for up to 3 misalignment, making installation easier and accommodating for slight mounting inaccuracies, thus boosting both operational efficiency and longevity.
FAQs of Radial Spherical Plain Bearing:
Q: How should this radial spherical plain bearing be installed?
A: The bearing is designed for press-fit mounting, which ensures secure and precise placement within the housing. During installation, it is important to use an appropriate fitting tool to avoid damaging the bearings surface finish or seals. Proper alignment should be maintained to leverage its 3 misalignment capability.
Q: What benefits does the double-sealed design offer in this bearing?
A: The double-sealed construction provides enhanced protection against contaminants, moisture, and debris. This extends the service life of the bearing by retaining lubrication and reducing the likelihood of premature wear or corrosion, especially in harsh environments like construction or agriculture.
Q: Where can these bearings be used effectively?
A: These radial spherical plain bearings are highly suitable for hydraulic cylinders, construction machinery, and agricultural equipment. Their durability and ability to accommodate misalignment and heavy loads make them ideal for demanding mechanical assemblies and environments exposed to dirt, water, and vibration.
Q: What is the typical process for maintaining this bearing in service?
A: Maintenance involves regular inspection and replenishment of grease through the lubrication system, as well as checking the seals for integrity. Routine monitoring helps ensure optimal performance and early identification of potential issues, reducing the risk of unexpected downtime.
Q: When should I choose this bearing over other types?
A: Select this bearing when your application requires accommodation of shaft misalignment, high dynamic and static load ratings, and operating temperatures between -30C to +120C. Its corrosion-resistant finish and double-seal design are advantageous in environments with moisture or abrasive particles.
Q: What surface finish options are available for this bearing?
A: You can choose between phosphating or chrome plating for the bearings surface finish. Both options are designed to improve corrosion resistance, with chrome plating offering a brilliant, smooth finish and phosphating providing a matte, phosphate-rich surface ideal for additional protection.
Q: How does this bearing handle misalignment in my application?
A: The spherical contact surface allows the bearing to accommodate misalignment of up to 3. This capability is crucial in assemblies where slight shaft or housing misalignments may occur, ensuring smooth operation and reducing the risk of bearing failure.