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A New Model for Constriction Resistance of Rough Contacts between Nominally Flat Surfaces

机译:名义上平坦表面粗糙触点的收缩阻力的新模型

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Thermal contact resistance plays an important role in many domains, such as microelectronics and nuclear reactors. This paper proposes a more comprehensive model for the prediction of constriction resistance of rough contact between nominally flat surfaces in vacuum. Firstly, a 3D geometrical asperity contact model is proposed based on the analysis of the profile of actual engineering surface. In this model, the contact is not simplified as a rough surface contacting with a perfectly smooth surface, but described as two rough surfaces. Oblique contact is considered and the effects of several parameters such as the shape of the asperity, the depth of interference, and the radial distance between the centerlines of the contacting asperities are investigated. Some mathematical derivations for constriction resistance are performed, and a series of numerical simulations are also carried out, covering a wide range of values of these parameters in practice applications. A comprehensive correlation for constriction resistance as a function of these parameters is finally obtained by nonlinear curve fitting, and it is validated through some comparisons and it can be used to predict more accurately the thermal contact resistance between rough surfaces.
机译:热接触电阻在许多领域中起重要作用,例如微电子和核反应堆。本文提出了一种更全面的模型,用于预测真空中标称平坦表面之间的粗糙接触的收缩阻力。首先,基于实际工程表面轮廓的分析提出了3D几何粗糙度接触模型。在该模型中,触点不被简化为与完全光滑的表面接触的粗糙表面,但是被描述为两个粗糙表面。考虑了倾斜接触,并研究了几种参数的效果,例如粗糙的形状,干扰深度和接触粗糙度之间的中心线之间的径向距离。执行用于收缩电阻的一些数学衍生,并且还执行一系列数值模拟,涵盖实际应用中这些参数的广泛值。通过非线性曲线配件最终获得作为这些参数的函数的收缩阻力的综合相关性,并且通过一些比较验证,它可用于预测更精确的粗糙表面之间的热接触电阻。

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