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Lubrication and Thermal Failure Mechanism Analysis in High-Speed Angular Contact Ball Bearing

机译:高速角接触滚珠轴承中的润滑和热故障机理分析

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摘要

Lubrication analysis of rolling bearing is often conducted with assumed operating conditions, which does not consider the effect of internal dynamics of rolling bearing. In this paper, the effects of the applied load and bearing rotational speed on the lubrication performance in an angular contact ball bearing are conducted, which combines the bearing dynamic analysis and thermo-elastohydrodynamic lubrication (TEHL) analysis. First, the internal motions and contact forces are obtained from the developed bearing dynamic model, and then were integrated into the TEHL model to investigate the lubrication performance of the bearing. The results show that the rotational speed and external load has significant effects on film thickness, temperature, and power loss; if the improper axial load is applied for certain bearing speed, the lubrication performance will deteriorate and thermal failure may occur; there exists critical load or speed to keep good lubrication performance and avoid thermal failure; the skidding contributes to the thermal failure and bad lubrication performance.
机译:滚动轴承的润滑分析通常是假设的操作条件进行的,这不考虑滚动轴承内部动力学的效果。在本文中,进行了施加负荷和轴承转速对角接触球轴承润滑性能的影响,其结合了轴承动态分析和热弹性动力学润滑(TEHL)分析。首先,内部运动和接触力是从发发的轴承动态模型中获得的,然后集成到TEHL模型中以研究轴承的润滑性能。结果表明,转速和外部负荷对膜厚度,温度和功率损耗具有显着影响;如果施加不正常的轴向载荷,则润滑性能会劣化,可能发生热失效;临界负载或速度保持良好的润滑性能,避免热失效; SPIDDING有助于热故障和润滑性能不良。

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