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Evolution of Sliding Contact Wear Between Deformable Conducting Bodies via a Multiphysics Framework

机译:多麦型框架可变形导电体滑动接触磨损的演变

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A multiphysics computational framework is introduced and exercised to predict the wear behavior of two deformable, heat-conducting bodies under conditions of sliding contact. This framework enables the solution of a coupled system of partial differential equations (PDEs) expressing the conservation of energy and momentum along with two ordinary differential equations (ODEs) expressing mass conservation. This system is intended to capture wear evolution for each of the bodies forming a wear pair, in a self-consistent manner. Furthermore, an arbitrary-Lagrangian-Eulerian approach has been integrated to enable tracking the evolution of the wear fronts on both elements of the sliding contact pair through physics-informed mesh deformation. A theorem and a corollary are proved to indicate that most existing models describing wear that are expressed in the form of an ODE are actually manifestations of the law of conservation of mass. The framework is applied for two distinct slider-base pairs. The first involves an aluminum alloy slider and a copper alloy base. The second pair is identical to the first except it contains a thin strip of soda-lime glass embedded in the surface of the base. The effects of this glass layer on the wear of all participating bodies in comparison to the pair that does not contain this layer are presented. They indicate that while the glass layer has a wear mitigation effect for the stationary base it slightly increases the wear of the slider when compared with the respective bodies when the glass is not present.
机译:引入和行使多职业计算框架以在滑动接触条件下预测两个可变形的导热体的磨损行为。该框架使得能够解决偏差方程(PDE)的耦合系统,其表达能量和动量的守恒以及表达质量保护的两个常微分方程(杂物)。该系统旨在以自一致的方式捕获形成耐磨对的每个主体的磨损演化。此外,已经集成了任意拉格朗日 - 欧拉欧洲方法,以通过物理信息的网格变形来实现跟踪滑动接触对的两个元件上的磨损前线的演变。证明定理和传感器表明,描述以颂歌形式表达的磨损的大多数现有模型实际上是群众守恒定律的表现。该框架适用于两个不同的滑块碱基对。首先涉及铝合金滑块和铜合金基座。第二对与第一对相同,除了它含有嵌入底座表面的稀释钠石玻璃薄带。呈现了该玻璃层对不包含该层的对的所有参与体的磨损的影响。它们表明,虽然玻璃层对静止基座具有磨损缓解效果,但是当玻璃不存在时,虽然与各个主体相比,略微增加滑块的磨损。

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