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A Design Tool for Selection and Optimization of Surface Finish in Mixed Lubrication

机译:混合润滑中表面光洁度选择和优化的设计工具

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This paper presents a deterministic approach developed recently for the numerical simulation of mixed EHD lubrication in rolling/sliding point contacts based on 3-D roughness measured and digitized directly from real engineering surfaces. The computer program has been proven to be robust for the entire transition from full film to mixed EHL and all the way down to boundary lubrication, or even dry contact. The simulation is capable of giving detailed results at asperity scale (or entire distribution) for the hydrodynamic and/or contact pressure, film thickness (or gap), surface and asperity deformation, subsurface stresses, friction and flash temperature at the interface, as well as load sharing between the hydrodynamic film and asperity contacts. Example cases with eight different types of surface finish, including ground, shaved, honed, chemically polished and mechanically super-finished, are analyzed under the same operating conditions. Results are compared with those from ideally smooth surfaces. Different lubrication modes due to different surface finishing processes have been observed. The effect of surface roughness/topography on the lubrication and surface contact characteristics is found to be significant. The detailed results are apparently useful for performance evaluation, efficiency and life improvement, problem diagnosis, failure prevention and production cost minimization. The computer program developed appears to be a useful engineering tool for design optimization and selection of surface finish processes.
机译:本文提出了一种确定性的方法最近开发的用于混合EHD润滑的数值模拟中滚动/基于测量的和直接从真实工程表面的数字化3-d粗糙度滑动点接触。的计算机程序已被证明是用于从全膜为混合EHL和向下边界润滑,或甚至干接点一路整个过渡健壮。仿真是能够给出在凹凸尺度(或整个分布)的详细结果为液力和/或接触压力,膜厚度(或间隙),表面和凹凸变形,地下应力,摩擦和闪蒸温度在界面处,以及如流体动力膜和粗糙的接触之间的负载共享。实施例例八种不同类型的表面光洁度的,包括地面,剃光,亚光,化学抛光和机械超完成后,在相同的操作条件下进行分析。结果与那些从理想光滑的表面相比。不同的润滑模式,由于不同表面精加工方法已被观察到。对润滑和表面接触特性表面粗糙度/形貌的效果被发现是显著。详细结果是绩效考核,效率以及寿命,故障诊断,故障预防和生产成本最小化显然是有益的。开发出现的计算机程序对设计优化和表面处理工艺的选择有用的工程工具。

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