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Thermomechanical modeling and transient analysis of sliding contacts between an elastic-plastic asperity and a rigid isothermal flat

机译:弹塑性凹凸与刚性等温平板之间滑动接触的热力学建模和瞬态分析

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摘要

To investigate thermomechanical contacts between an elastic-plastic sphere and a rigid flat, simulations with slip rates ranging from 0.1 m/s to 10 m/s were performed. As interfaces with strong interfacial bonding but weak substrate were specifically targeted, slip initiation was treated as shear failure of the softer material in numerical simulations. The simulations show that both sliding friction coefficient and friction stress are significantly dependent on slip rate while the maximum static friction coefficient is independent of that. Moreover, the energy release during the transition from full stick to full slip is comparable to the shear fracture energy of the material.
机译:为了研究弹塑性球与刚性平面之间的热机械接触,进行了滑移率范围从0.1 m / s到10 m / s的模拟。由于专门针对具有强界面粘合力但弱基材的界面,在数值模拟中将滑移引发视为较软材料的剪切破坏。仿真表明,滑动摩擦系数和摩擦应力均与滑移率显着相关,而最大静摩擦系数与滑移率无关。此外,从完全粘着过渡到完全滑动的过程中释放的能量与材料的剪切断裂能相当。

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