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On the role of adhesion and roughness in stick-slip transition at the contact of two bodies: A numerical study

机译:两体粘附转变中粘附性和粗糙度的作用:数值研究

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摘要

This paper proposes a boundary element model for the stick-slip transition at the contact of two bodies of dissimilar materials in presence of adhesion due to van der Waals force. The adhesion is modeled using a Dugdale approximation of adhesive energy. The coupling between the normal pressure and shear stresses is included so that there is no full-stick condition, even in the absence of an external shear stress. Furthermore, the evolution of the slip area over the contact area is different from the well-known Cattaneo-Mindlin solution due to the difference in the mechanical properties of the contacting bodies. It is also shown that the adhesion increases the pre-sliding distance and the static friction. While roughness can only increase the former one. However, the combined effect of roughness and adhesion on the pre-sliding distance is not cumulative as these two parameters are found to be symbiotic.
机译:本文提出了一种由于范德瓦尔斯力的粘附存在粘附的两个体外材料的接触处的粘滑过渡的边界元模型。 使用粘合剂能量的Dugdale近似建模粘合力。 常规压力和剪切应力之间的耦合包括在内,即使在没有外部剪切应力的情况下也没有全粘条件。 此外,由于接触体的机械性能的差异,接触面积上的滑动区域的进化与众所周知的Cattaneo-Mindlin溶液不同。 还表明粘合力增加了预滑距离和静摩擦。 虽然粗糙度只能增加前者。 然而,粗糙度和粘附对预滑距离的粘合性的综合作用是不累积的,因为这两个参数被发现是共生的。

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