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The study of anisotropic rough surfaces contact considering lateral contact and interaction between asperities

机译:考虑到横向接触和粗糙度之间的相互作用,对各向异性粗糙表面接触的研究

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摘要

Interfacial performances are dissimilar due to the different surface topographies and materials. The aim of this paper is to study the effect of the surface topography on the contact force, contact area and contact stiffness. The distributions of the contact azimuthal angles and the contact angles were introduced in the model to build an anisotropic interface model, which includes the asperity lateral contact and the interaction. The simulation results indicate that the normal contact force, real contact area and contact stiffness decrease with the increasing separation. The standard deviations of asperity heights and asperity contact angles have significant influences on the contact of rough surfaces, while the interfacial anisotropy does not influence the contact performances in the normal direction.
机译:由于表面拓扑和材料不同,界面性能是不同的。 本文的目的是研究表面形貌对接触力,接触面积和接触刚度的影响。 在模型中引入了触点方位角和接触角的分布以构建各向异性界面模型,包括粗糙的横向接触和相互作用。 模拟结果表明,正常接触力,真正的接触面积和接触刚度随着分离而降低。 粗糙度高度和粗糙度接触角的标准偏差对粗糙表面的接触具有显着影响,而界面各向异性不会影响正常方向上的接触性能。

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