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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Analysis of real contact area between an elasto-plastic rough body and an elasto-plastic flat body
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Analysis of real contact area between an elasto-plastic rough body and an elasto-plastic flat body

机译:弹塑性粗糙体与弹塑性扁平体之间的实际接触面积分析

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摘要

A three-dimensional model of an elasto-plastic rough surface featured by fractal geometry sliding over an elasto-plastic flat body is developed. The three-dimensional model considers the thermo-mechanical coupling and the heat flux coupling between the sliding surfaces. To obtain the transient real contact area, the problem under this three-dimensional model is solved by the finite element method. The results show that the real contact area is a small fraction of the nominal contact area during the loading and sliding process, and increases with the increase in the applied normal load. In the initial stage of friction sliding, the real contact area increases and fluctuates noticeably for the abrupt change of sliding speed, and then varies in a small range under the constant normal load and sliding velocity. It is also shown that frictional heating increases the real contact area, the instantaneous maximum contact pressure by comparing the results with those obtained from the same model, however, in which the thermal effect of frictional heat is not considered. That is to say, the real contact area is larger when the thermo-mechanical coupling is considered. It is crucial to take the thermo-mechanical coupling effect into account especially for the micro frictional sliding analysis.
机译:建立了弹塑性粗糙表面的三维模型,其特征是分形几何形状在弹塑性平面上滑动。三维模型考虑了滑动表面之间的热力耦合和热通量耦合。为了获得瞬态实际接触面积,通过有限元方法解决了该三维模型下的问题。结果表明,在载荷和滑动过程中,实际接触面积仅是名义接触面积的一小部分,并且随着施加的法向载荷的增加而增加。在摩擦滑动的初始阶段,实际接触面积随着滑动速度的突然变化而显着增加和波动,然后在恒定的法向载荷和滑动速度下在很小的范围内变化。还表明,通过将结果与从同一模型中获得的结果进行比较,摩擦加热会增加实际接触面积和瞬时最大接触压力,但是,其中并未考虑摩擦热的热效应。也就是说,当考虑热机械耦合时,实际接触面积更大。特别是对于微摩擦滑动分析而言,考虑热力耦合效应至关重要。

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