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ANALYSIS OF THERMO-ELASTIC WEAR PROBLEMS

机译:热弹磨损问题分析

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In the relative sliding motion of two elastic bodies on contact interfaces both frictional dissipation and wear process occur. The wear process induces shape evolution of contact surface and growth of contact zone. The temperature field is generated by external heat flow and by frictional dissipation on the contact surface. The wear and heat conduction processes are coupled and tend to their steady or quasi-steady states for which the stress and temperature fields are fixed on the translating contact zone and depend only on its size and shape parameters. The steady-state is characterized by the minimum of wear dissipation power for which the stationary conditions generate the contact pressure distribution. The related steady-state temperature field is next specified and the thermal distortion effect is analyzed. The contact shape attained in the steady wear state is optimal as it corresponds to minimal wear rate, and its form depends on both mechanical loading and temeperature field. Several specific examples are presented for translating and rotating punches.
机译:在两个弹性体在接触界面上的相对滑动中,会发生摩擦耗散和磨损过程。磨损过程引起接触表面的形状演变和接触区域的增长。温度场是由外部热流和接触面上的摩擦耗散产生的。磨损和导热过程是耦合的,并且趋于它们的稳态或准稳态,其应力场和温度场固定在平移接触区上,并且仅取决于其尺寸和形状参数。稳态的特征是最小的耗散功率,在这种情况下,静态条件会产生接触压力分布。接下来指定相关的稳态温度场,并分析热变形效应。在稳态磨损状态下获得的接触形状是最佳的,因为它对应于最小的磨损率,并且其形状取决于机械载荷和温度场。提出了一些用于平移和旋转冲头的特定示例。

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