Finite Element Analysis of Solid and Hollow Roller Bearings to Predict the Influence of Contact Factors on Cage Slip

Selvaraj Arthanari, Chandru Manivannan, Senthilkumar Palanisamy, Parandaman Ponnan
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Abstract

This study examines the influence of contact factors such as bearing deformation, contact width and contact pressure on cage slide in cylindrical roller bearings. A cylindrical shaped roller bearing test setup is designed in order to determine the operating speed of bearing components under varying working circumstances. Solid and hollow roller bearings are analyzed using finite element technique, and the contact parameters are obtained. The cage slip obtained by experimental work is correlated with the contact parameters of hollow and solid shaped roller bearings. The specific load acting on solid rollers at various angular positions and the corresponding bearing deflection are obtained by FEA and the bearing run out is estimated. A new methodology is developed for deriving the contact mechanics of hollow roller to predict contact pressure and contact width from the roller deflection. The effect of hollowness on these parameters is derived and the corresponding cage slip is correlated. The effect of hollowness on bending and resultant stresses is obtained by numerical and analytical methods to correlate the stability of hollow roller bearing with the percentage of hollowness.
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对实心和空心滚子轴承进行有限元分析以预测接触因素对保持架滑移的影响
本研究探讨了轴承变形、接触宽度和接触压力等接触因素对圆柱滚子轴承保持架滑动的影响。设计了圆柱形滚子轴承测试装置,以确定轴承部件在不同工作环境下的运行速度。使用有限元技术分析了实心和空心滚子轴承,并获得了接触参数。实验工作获得的保持架滑移与空心和实心异形滚子轴承的接触参数相关联。通过有限元分析获得了不同角度位置上作用在实心滚子上的特定载荷和相应的轴承挠度,并估算了轴承的跳动。开发了一种推导空心滚子接触力学的新方法,可根据滚子挠度预测接触压力和接触宽度。得出了空心率对这些参数的影响,并与相应的保持架滑移相关联。通过数值和分析方法得出了空心率对弯曲应力和结果应力的影响,从而将空心滚子轴承的稳定性与空心率的百分比联系起来。
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