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Thrust Needle Roller And Cage Assembly Type AXK
Needle roller thrust bearings are fitted with a form-stable cage to reliably retain and guide a large number of needle rollers. Needle roller thrust bearings provide a high degree of stiffness within a minimum axial space. In applications where the faces of adjacent machine components can serve as raceways, needle roller thrust bearings take up no more space than a conventional thrust washer.
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Thrust Spherical Roller Type 29000
Spherical roller thrust bearings have specially designed raceways and asymmetrical rollers. The bearings can accommodate axial loads acting in one direction and simultaneously acting radial loads. The load is transmitted between the raceways via the rollers at an angle to the bearing axis, while the flange guides the rollers .
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Double direction thrust ball bearings include a shaft washer, two seat washers and two steel ball-cage assemblies. The bearing is a separate type, and each part can be installed independently. Double direction bearings and single direction bearings use the same shaft washer, seat washer and steel ball-cage assembly.
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53000 U-Bearings are bearings with self-aligning seat washers that can be used with self-aligning seat washers to compensate for angular misalignment between the support surface in the housing and the shaft. Depending on the bearing series, spherical seat washers have the basic designation U 2, U 3 or U 4, plus two digits indicating the size (eg spherical seat washer U 320 for bearing 53320).
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Type 53000 bearings are single direction thrust bearings with spherical housing locating washers to accommodate axial loads in one direction. They must not bear any radial loads. Many components are interchangeable. The shaft washers have ground holes for an interference fit.
This type not only has a separable design for easy installation/removal and maintenance inspection, but also interchanges components, the ground holes of the shaft washers allow for an interference fit, and the spherical housing washers accommodate initial misalignment.
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