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FE analysis of a novel roller form: a deep end-cavity roller for roller-type bearings

机译:新型滚子形式的有限元分析:用于滚子型轴承的深孔腔滚子

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摘要

A novel roller form, a deep end-cavity roller, is proposed for roller-type bearings, with a view to reducing the weight of the structure and the centrifugal forces acting on the outer race of the bearing, and reducing the sensitivity of the bearing performance to the manufacturing precision. FE simulation results suggest that the new design would enable a straight-profile-roller bearing to have a similar performance to that for a logarithmic-profile roller bearing, as the deep end-cavity roller eliminates the sharp edge-stresses at the two apexes of the roller. Compared with the manufacture of a logarithmic-profile roller, the manufacture of a straight-profile deep end-cavity roller is simpler, and less strict on manufacturing precision. The deep end-cavity roller also enables an "in-process" correction of the contact-stress distribution between the roller and the raceway.
机译:为了减轻结构的重量和作用在轴承外圈上的离心力,并降低轴承的灵敏度,提出了一种新颖的辊形式,即深端腔滚子,用于滚子型轴承。性能到制造精度。有限元仿真结果表明,这种新设计将使直轮廓滚子轴承具有与对数轮廓滚子轴承类似的性能,因为深端腔滚子消除了两个端部的尖锐边缘应力滚子。与对数轮廓辊的制造相比,直轮廓深端腔辊的制造更简单,并且对制造精度的要求不高。深端腔滚子还可以“在线”校正滚子与滚道之间的接触应力分布。

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