Dynamic model of stationary contacts based on random variations of surface characteristics

R. Malucci
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引用次数: 10

Abstract

A statistical model was developed to characterize surface profiles and calculate the density of contact spots produced when rough surfaces are pressed together. This model incorporates contact force, microhardness, and real and apparent contact area as parameters which can be varied. The effects these variables have on the number of contact spots and asperity deformation were calculated. These results were subsequently used to evaluate the impact on electrical performance of aged contacts. This was accomplished using a previously developed degradation model that utilizes the concept of a third level of constriction to simulate aging. The results indicate that both contact force and geometry play important roles in the electrical performance of aging contacts. The connection between geometry and apparent pressure was estimated using Hertz theory and indicates that one pressure can also be viewed as an important variable.<>
基于表面特性随机变化的静止接触动力学模型
建立了一个统计模型来描述表面轮廓,并计算粗糙表面被压在一起时产生的接触点密度。该模型将接触力、显微硬度、实际接触面积和表观接触面积作为可变化的参数。计算了这些变量对接触点数和粗糙变形的影响。这些结果随后被用于评估老化触点对电气性能的影响。这是使用先前开发的退化模型来完成的,该模型利用第三层收缩的概念来模拟老化。结果表明,接触力和几何形状对老化触点的电性能有重要影响。利用赫兹理论估计了几何形状与表观压力之间的联系,并表明压力也可以被视为一个重要的变量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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