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A multiphysics theory for the static contact of deformable conductors with fractal rough surfaces

机译:形变导体与分形粗糙表面静态接触的多物理场理论

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In the present paper we are proposing a multi-field and multiscale theory leading to derivations of electric and thermal conductivities for the interface between two rough surfaces in contact activated by mechanical load and electric current pulses. At the macroscale the proposed model involves multi-field coupling of conduction and induction currents with heat conduction induced by Joule heating. The structural mechanics of the conducting materials are also considered. At the mesoscale and microscale the associated model contains an asperity based comprehensive model that leads to homogenized macro scale properties for the interface boundary. The mechanical pressure and the repulsion effect from electric current through the micro-contacts are accounted for as well. Finally, the entire framework is applied to an actual conductor configuration of hollow cylinders under compression and a high current pulse to demonstrate the feasibility of the entire approach. In addition to providing typical results for all selected fields present during the experiment and the simulation, we also provide a comparison between the experimentally acquired resistance histories with the numerically derived ones to address validation aspects of the general multiphysics contact theory.
机译:在本文中,我们提出了一种多领域,多尺度的理论,该理论可导出由机械负载和电流脉冲激活的两个粗糙接触面之间的界面的电导率和热导率。在宏观上,所提出的模型涉及传导和感应电流与焦耳加热引起的热传导的多场耦合。还考虑了导电材料的结构力学。在中尺度和微观尺度上,关联的模型包含一个基于粗糙的综合模型,该模型可导致界面边界的宏观尺度属性均一。还考虑了机械压力和来自通过微触点的电流的排斥作用。最后,将整个框架应用于压缩和高电流脉冲下空心圆柱体的实际导体构造,以证明整个方法的可行性。除了为实验和模拟过程中出现的所有选定场提供典型结果外,我们还提供了实验获得的电阻历史与数值推导的电阻历史之间的比较,以解决一般多物理场接触理论的验证方面。

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