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Rough surface flow factors in full film lubrication based on a homogenization technique

机译:基于均质化技术的全膜润滑中的粗糙表面流动因子

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摘要

This paper describes a method to compute the flow factors that compensate for an arbitrary surface roughness in a compressible hydrodynamic lubrication based on a homogenization technique. The Reynolds equation is used as the governing equation and the two-scale expansion involved in the homogenization process enables the local roughness scale to be treated separately from the global geometry scale. With this method, it is possible to compute the flow factors for any deterministic roughness. Measured two-dimensional surface profiles are used as examples. Profiles having the same Abbot curve are also shown to have the same flow factors, providing an efficient classification of surfaces in hydrodynamic two-dimensional contacts. Flow factors are computed for the rough surface profiles, and solutions for global bearing geometry are obtained and compared with the corresponding solutions from a smooth geometry.
机译:本文介绍了一种基于均质技术计算可压缩流体动力润滑中补偿任意表面粗糙度的流量因子的方法。雷诺方程被用作控制方程,同质化过程中涉及的两尺度展开使得局部粗糙度尺度可以与整体几何尺度分开处理。使用这种方法,可以计算任何确定性粗糙度的流量因子。以测量的二维表面轮廓为例。具有相同Abbot曲线的轮廓也显示为具有相同的流量因数,从而在流体力学二维接触中提供了有效的表面分类。计算出粗糙表面轮廓的流量因数,并获得整体轴承几何形状的解,并将其与来自平滑几何形状的相应解进行比较。

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