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On elastic deformation, inter-asperity cavitation and lubricant thermal effects on flow factors

机译:关于弹性变形,空隙间空化和润滑剂热对流量因子的影响

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摘要

Separate or combined effects of elastic deformation and inter-asperity cavitation of rough surfaces and lubricant thermal effect, resulting from different lubrication conditions, on flow factors were investigated based on an extended Reynolds equation and associated equations. The numerical results reveal that the flow factors given by Patir and Cheng are valid only over the range of big ratio of film thickness to roughness (h/σ), while their validities obviously drop for small h/σ due to the separate or combined effect of the above influencing factors. Moreover, variations of flow factors due to the combined effect of deformation and inter-asperity cavitation are significantly different from those by separate effects of these influencing factors. Therefore, Patir and Cheng's flow factors should be used with caution and corrected according to specific lubrication conditions.
机译:基于扩展的雷诺方程和相关方程,研究了不同润滑条件引起的弹性变形和粗糙表面空化以及润滑剂热效应对流动因子的单独或组合影响。数值结果表明,Patir和Cheng给出的流动因子仅在膜厚与粗糙度之比大(h /σ)的范围内才有效,而对于小h /σ而言,由于分离或组合效应,其有效性明显下降以上影响因素。而且,由于变形和空隙间空化的综合作用而导致的流量因素变化,与这些影响因素的单独影响相比,有很大不同。因此,应谨慎使用Patir和Cheng的流量系数,并根据特定的润滑条件进行校正。

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