电接触中粗糙度分布的数值研究

Per Lindholm
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引用次数: 3

摘要

电触点由表面接触的部分组成,实际的物理接触发生在分散在整个表观接触区域的几个接触凹凸点上。通过配合体之间的这些接触点,传递机械负荷和电流。通常使用软涂层来扩大实际接触面积。对接触材料的机械应力进行建模,既考虑了接触材料的导电和发热的非线性效应,也考虑了接触材料的实际机械接触。本文采用有限元模型研究了两表面裂纹接触时的多物理场热机电现象。描述粗糙体大小、分布、法向和剪切载荷以及材料特性的三维模型。在六边形几何形状和对称边界条件下,可以描述粗糙度相似的较大接触面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Study of Asperity Distribution in an Electrical Contact
Electrical contacts consists of parts where the surfaces are in contact and where the actual physical contact occur just in a few contact asperity points scattered over the whole apparent contact area. Through these contact spots between the mating bodies the mechanical load and the electric current is transmitted. Often a soft coating is used to enlarge the real contact area. Modeling the mechanical stress on the contacting material includes nonlinear effects of the electric conduction and heat generation as well as the actual mechanical contact of the asperities. A finite element model has been used to study the multiphysics of thermo electromechanical phenomena when two surface asperities are in contact. A three dimensional model describing the asperity size, distribution, normal and shear loads and material property. With geometry of hexagonal shape and symmetrical boundary conditions a larger contact surface of similar roughness can be described.
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