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Numerical Analysis of Sliding Friction Behavior of Rubber

机译:橡胶滑动摩擦行为的数值分析

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A study has been made of asperity interaction of unlubricated steel/rubber sliding pair. The aim is to study the effect of the internal friction (hysteresis) of rubber on the friction force. In the two-dimensional finite element analysis, asperities are modeled by cylinders and both the interfacial adhesion and the friction at steel-rubber interface are neglected. Rate-dependent material behavior of rubber is described, as a first approximation, by a three-parameter Zener-model. It is found that the viscoelastic properties of rubber have a strong influence on the hysteresis component of friction. Distribution of energy loss generated over a cycle of contact in the rubber asperity is also studied. It is concluded that the energy dissipation is most intensive at a certain depth below the rubber surface.
机译:采用无孔钢/橡胶滑动对的粗糙相互作用进行了研究。目的是研究橡胶内部摩擦(滞后)对摩擦力的影响。在二维有限元分析中,粗糙度由汽缸建模,渗透界面粘附和钢 - 橡胶界面的摩擦均被忽略。通过三参数齐纳模型描述橡胶的速率依赖性材料行为作为第一近似。发现橡胶的粘弹性性能对摩擦滞后组分具有很大的影响。还研究了在橡胶粗糙度的接触周期产生的能量损失分布。结论是,能量耗散在橡胶表面下方的某个深度上是最强烈的。

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