首页> 外文期刊>International Journal of Solids and Structures >Micromechanical stress-displacement model for rough interfaces: Effect of asperity contact orientation on closure and shear behavior
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Micromechanical stress-displacement model for rough interfaces: Effect of asperity contact orientation on closure and shear behavior

机译:粗糙界面的微机械应力-位移模型:粗糙接触取向对闭合和剪切行为的影响

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摘要

The coupled normal-shear contact behavior of rough surfaces remains a problem of interest with applications in many practical engineering problems. In this paper, we have further developed a micromechanical approach for obtaining the stress-displacement behavior of rough interfaces. The micromechanical approach considers the mechanics of asperity contacts and utilizes statistical description of interface roughness. Here we have focused upon the role of asperity contact orientations. To that end, we have incorporated asperity contact relative curvature distribution in our model and derived a relationship for the extent of asperity contact orientations in terms of the asperity contact relative curvature and interface closure. This relationship allows us to define the range of asperity contact orientation as the interface is subjected to combined normal and shear loading. We have consequently refined our stress-displacement relationship and its numerical evaluation procedure to include the asperity contact relative curvature distributions. We find that the asperity contact relative curvature has a significant effect on the extent of asperity contact orientation, and consequently on the shear behavior of the interface. We also find that the coupling between the normal and the shear responses, the interface frictional strength and the shear displacement hardening behavior are closely related to the extent of asperity contact orientations.
机译:粗糙表面的耦合的法向剪切接触行为仍然是许多实际工程问题中应用所关注的问题。在本文中,我们进一步开发了一种微机械方法来获得粗糙界面的应力-位移行为。微观力学方法考虑了粗糙接触的机理,并利用了界面粗糙度的统计描述。在这里,我们集中讨论了粗糙接触定向的作用。为此,我们在模型中纳入了粗糙接触的相对曲率分布,并根据粗糙接触的相对曲率和界面闭合情况得出了粗糙接触方向的程度的关系。这种关系使我们能够定义粗糙接触接触方向的范围,因为界面要承受组合的法向载荷和剪切载荷。因此,我们改进了应力-位移关系及其数值评估程序,以包括粗糙接触的相对曲率分布。我们发现,粗糙接触的相对曲率对粗糙接触方向的程度有很大影响,因此对界面的剪切行为也有很大的影响。我们还发现,法向和剪切响应,界面摩擦强度和剪切位移硬化行为之间的耦合与粗糙接触方向的程度密切相关。

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