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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Study on the running torque of angular contact ball bearings subjected to angular misalignment
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Study on the running torque of angular contact ball bearings subjected to angular misalignment

机译:角度未对准角接触球轴承的运行扭矩研究

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摘要

Angular misalignment is unavoidable in most applications of rolling-element bearings. The goal of this study is to examine the effects of angular misalignment on the running torque of angular contact ball bearings. A computational method to calculate the running torque of misaligned angular contact ball bearings was introduced. Then, the effects of angular misalignment, along with radial and axial loading, on the running torque of angular contact ball bearings were investigated for two representative preloading methods: constant-force preload and constant-displacement preload. The simulation results showed that (1) the angular misalignment, irrespective of bearing loading, significantly increases the angular contact ball bearing running torque when the constant-displacement preload method was implemented, and (2) the angular misalignment has an insignificant effect on the angular contact ball bearing running torque when the constant-force preload method was adopted. Furthermore, an extensive simulation was performed to examine the effect of load-induced angular misalignment on the running torque of angular contact ball bearings implemented in a geared shaft system. The simulation results showed that the radial load-induced angular misalignment requires additional running torque to the actual rotor-bearing systems, especially when using the constant-displacement preload.
机译:在大多数滚动元件轴承的应用中,角度未对流是不可避免的。本研究的目标是检查角度未对准对角接触球轴承的运行扭矩的影响。引入了计算错位角接触球轴承的运行扭矩的计算方法。然后,研究了角度未对准的影响,以及径向和轴向负载,用于两个代表性预加载方法:恒力预载和恒定位移预载荷。仿真结果表明,(1)无关轴承载荷的角度未对准,当实施恒定位移预载方法时,显着增加了角度接触球轴承运行扭矩,并且(2)角度未对准对角度有微不足道的影响采用恒定力预载方法时,接触滚珠轴承运行扭矩。此外,进行广泛的模拟以检查负载引起的角度未对流对在齿轮轴系统中实现的角接触球轴承的运行扭矩上的影响。仿真结果表明,径向载荷引起的角度未对准需要额外的运行扭矩到实际的转子系统,特别是在使用恒定位移预载荷时。

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