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Effects of surface roughness on local friction and temperature distributions in a steel-on-steel fretting contact

机译:表面粗糙度对钢 - 钢微动接触局部摩擦和温度分布的影响

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摘要

It has generally been assumed that initial surface roughness has significant influences on local frictional shear stresses and flash temperatures in fretting contacts. However, since these hypotheses are difficult to directly measure, the frictional shear stress and temperature rise distributions in a steel-on-steel fretting contact are investigated by finite element method. The rough contacting surfaces were modelled as fractal surfaces by the Weierstrass-Mandelbrot function. The simulation results show that the frictional shear stress distribution resulted from the rough contact model is discrete, and the local stresses are highly concentrated which result in higher peak temperature rise than that from the smooth contact model. The influences of the plasticity of materials, load and frequency on the temperature rise are also discussed.
机译:通常假设初始表面粗糙度对局部摩擦剪切应力和闪光温度的释放触点具有显着影响。然而,由于这些假设难以直接测量,因此通过有限元方法研究了钢上钢断线接触中的摩擦剪切应力和升温分布。粗糙的接触表面被Weierstrass-mandelbrot函数模拟为分形表面。仿真结果表明,粗糙接触模型产生的摩擦剪切应力分布是离散的,并且局部应力高度浓缩,从而高于光滑触点模型的峰值温度升高。还讨论了材料,负荷和频率的可塑性对温度升高的影响。

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