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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Study on combined influence of inter-asperity cavitation and elastic deformation of non-Gaussian surfaces on flow factors
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Study on combined influence of inter-asperity cavitation and elastic deformation of non-Gaussian surfaces on flow factors

机译:气孔间空化和非高斯表面弹性变形对流动因子的综合影响研究

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摘要

The combined influence of inter-asperity cavitation and elastic deformation of non-Gaussian surfaces on flow factors is numerically investigated based on the equations for flow factor analyses, since some engineering surfaces are non-Gaussian. For this task, non-Gaussian surfaces are generated at first through a digital filter technique by using authors' computer code whose validity is proven. The numerical results show that the pressure flow factor increases whereas the shear flow factor decreases with low film thickness-to-roughness ratio (h/σ < 3 or so). This is due to the above-said combined influence, if the oblique flow of lubricant is not obvious. But for a high film thickness-to-roughness ratio (approximately h/σ ≥ 3), the combined influence becomes weaker, hence ignored. Therefore, the above-said combined effect similar to the one from Gaussian surface circumstances ought to be considered in flow factor analyses and their applications.
机译:由于某些工程表面是非高斯的,因此基于流因分析方程,数值研究了气孔间空化和非高斯表面的弹性变形对流动因子的综合影响。对于此任务,首先通过数字滤波器技术使用作者的计算机代码(其有效性已得到证明)生成非高斯曲面。数值结果表明,当膜厚与粗糙度之比较低时(h /σ<3左右),压力流量因数增加而剪切流量因数减少。如果润滑剂的斜流不明显,则这是由于上述综合影响。但是,对于高的膜厚粗糙度比(h /σ≥3),综合影响变弱,因此可以忽略。因此,在流量因子分析及其应用中应考虑上述与高斯表面情况相似的组合效应。

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