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Experimental verification of rate-dependent elastoplastic analogy friction model and its application to FE analysis

机译:速率相关的弹塑性类比摩擦模型的实验验证及其在有限元分析中的应用

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摘要

When two solid bodies in contact slide slowly past each other without lubrication, an intermittent vibration phenomenon might be observed. Such rate-dependent frictional behaviors are referred to as stick-slip motions, and such motions can impair the stability of machines and structures. The aim of this study is to propose a numerical approach for analyzing stick-slip motion; the approach is based on the finite element method implemented using a rate-dependent friction model. First, we demonstrate the capability of the rate-dependent friction model by comparing its results with experimental results obtained under various material and dynamic conditions. Then, a simple finite element analysis of rate-dependent frictional sliding behavior, including stick-slip motion, is carried out to examine the effect of the material and geometric properties and boundary conditions on the numerical results. The present numerical approach can consider not only the properties of friction and materials but also variations in boundary conditions.
机译:当两个接触的固体在没有润滑的情况下彼此缓慢滑动时,可能会观察到间歇性的振动现象。这种与速率相关的摩擦行为称为粘滑运动,并且这种运动会损害机器和结构的稳定性。这项研究的目的是提出一种分析粘滑运动的数值方法。该方法基于使用基于速率的摩擦模型实现的有限元方法。首先,我们通过将速率相关的摩擦模型的结果与在各种材料和动态条件下获得的实验结果进行比较,证明了速率依赖的摩擦模型的功能。然后,对速率相关的摩擦滑动行为(包括粘滑运动)进行简单的有限元分析,以检验材料和几何特性以及边界条件对数值结果的影响。本数值方法不仅可以考虑摩擦和材料的特性,而且可以考虑边界条件的变化。

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