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Analysis of EHL Circular Contact Start Up: Part I—Mixed Contact Model With Pressure and Film Thickness Results

机译:EHL圆形接触启动分析:第一部分—压力和薄膜厚度结果为混合的接触模型

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摘要

In this paper a model is presented to investigate the start up condition in elastohydrodynamic lubrication. During start up the lubrication condition falls into the mixed lubrication regime. The transition from solid contact to lubricated contact is of importance when investigating the start up process and its effects on bearing performance. The model presented uses the multigrid multilevel method to solve the lubricated region of the contact and a minimization of complementary energy approach to solve the solid contact region. The FFT method is incorporated to speed up the film thickness calculation. An iteration scheme between the lubrication and the solid contact problems is used to achieve the solution of the mixed lubrication contact problem. The results of start up with smooth surfaces are provided for the case when speed increases from zero to desired speed in one step and the case when speed is linearly increased to desired speed. The details of the transition from full solid contact to full lubricated contact in EHL start up are presented. The change of pressure and film thickness as well as contact forces and contact areas are discussed.
机译:本文提出了一个模型来研究弹性流体动力润滑的启动条件。在启动过程中,润滑状态进入混合润滑状态。在研究启动过程及其对轴承性能的影响时,从固体接触到润滑接触的过渡非常重要。提出的模型使用多网格多级方法求解接触点的润滑区域,并使用最小化补充能量的方法求解固体接触点。结合了FFT方法以加快膜厚计算。润滑和固体接触问题之间的迭代方案用于实现混合润滑接触问题的解决方案。当速度从零增加到期望速度一步时的情况以及速度线性增加到期望速度时的情况,提供了使用光滑表面启动的结果。详细介绍了在EHL启动中从完全固体接触到完全润滑接触的过渡过程。讨论了压力和薄膜厚度的变化以及接触力和接触面积的变化。

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