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Thermal boundary conditions to simulate friction layers and coatings at sliding contacts

机译:热边界条件,用于模拟滑动触点上的摩擦层和涂层

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摘要

A brief review of the thermal boundary conditions specified at sliding interfaces was performed. New thermal boundary conditions were derived aimed at solving problems of sliding with account of surface layers representing friction layers and tribological coatings. Based on the assumption of linear temperature distributions in the surface layers, the proposed conditions enable one to simplify simulations by eliminating the surface layers from consideration and merging thermally the bulk bodies. A problem of non-stationary heat conduction in two sliding semispaces with the proposed conditions at their interface was solved analytically. The particular cases of the solution were shown to coincide with the exact temperature expressions obtained for different well-known boundary conditions. The temperature influence of the basic parameters was analysed in dimensionless form on example of a decelerative sliding between a semispace covered with a surface layer and a semispace of constant temperature. An estimation of the error introduced by the proposed conditions was done. It was found that the error is below 1% for a wide class of friction layers and coatings met in practice. (C) 2018 Elsevier Ltd. All rights reserved.
机译:简要回顾了在滑动界面处指定的热边界条件。推导了新的热边界条件,旨在解决代表摩擦层和摩擦涂层的表面层的滑动问题。基于表层中线性温度分布的假设,所提出的条件使人们可以通过消除考虑的表层并热合并块体来简化仿真。解析地解决了两个具有拟议条件的滑动半空间中的非平稳热传导问题。溶液的特定情况显示出与针对不同的已知边界条件获得的精确温度表达式一致。基本参数的温度影响以无量纲形式进行了分析,以一个在覆盖有表面层的半空间和一个恒温半空间之间的减速滑动为例。对提出的条件引入的误差进行了估计。发现在实践中遇到的各种摩擦层和涂层的误差均低于1%。 (C)2018 Elsevier Ltd.保留所有权利。

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