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A Static Friction Model for Elastic-Plastic Contacting Rough Surfaces

机译:弹塑性接触粗糙表面的静摩擦模型

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摘要

A model that predicts the static friction for elastic-plastic contact of rough surfaces is presented. The model incorporates the results of accurate finite element analyses for the elastic-plastic contact, adhesion and sliding inception of a single asperity in a statistical representation of surface roughness. The model shows strong effect of the external force and nominal contact area on the static friction coefficient in contrast to the classical laws of friction. It also shows that the main dimensionless parameters affecting the static friction coefficient are the plasticity index and adhesion parameter. The effect of adhesion on the static friction is discussed and found to be negligible at plasticity index values larger than 2. It is shown that the classical laws of friction are a limiting case of the present more general solution and are adequate only for high plasticity index and negligible adhesion. Some potential limitations of the present model are also discussed pointing to possible improvements. A comparison of the present results with those obtained from an approximate CEB friction model shows substantial differences, with the latter severely underestimating the static friction coefficient.
机译:提出了一个预测粗糙表面弹塑性接触的静摩擦的模型。该模型结合了表面粗糙度的统计表示形式,对单个凹凸的弹塑性接触,粘附和滑动开始进行了精确的有限元分析,从而得出结果。与经典的摩擦定律相反,该模型显示了外力和名义接触面积对静摩擦系数的强烈影响。它也表明影响静摩擦系数的主要无量纲参数是可塑性指数和附着力参数。讨论了粘附力对静摩擦的影响,发现塑性指数值大于2时,该影响可以忽略不计。这表明经典摩擦定律是当前更为通用的解决方案的极限情况,仅适用于高塑性指数和可忽略的附着力。还讨论了本模型的一些潜在局限性,指出可能的改进。将本结果与从近似CEB摩擦模型获得的结果进行比较,显示出显着差异,而后者严重低估了静摩擦系数。

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