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Solution to the Frictional Contact Problem via the Method of Memory Diagrams for General 3D Loading Histories

机译:通过通用3D加载历史的内存图方法解决摩擦接触问题

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This paper is concerned with the method of memory diagrams developed for solving a problem of frictional elastic contact. Our goal is to establish a link between contact force and displacement for a general plane contact between two arbitrarily-shaped bodies; rolling and torsion are not considered. Description of mechanical interactions between two solids in contact in the presence of friction is a nontrivial task since the desired force-displacement relationships have hysteretic (memory-dependent) character. Arbitrarily changing applied force (or displacement) creates a cumbersome shear stress distribution in the contact zone that has to be adequately parameterized and accounted for. In that regard, it is suggested to consider, instead of complex shear stress distributions, a simpler functional form called memory diagram that contains the same memory information. We have established two integral relationships that link the force and displacement vectors with that internal functional dependency. The integral relationships are supplemented with two other evolution rules for memory diagrams that eventually follow from the Coulomb friction law. The memory diagram is updated with the help of these rules following a given force history. Then the calculated memory diagram is used to update the history of displacement i.e. to produce the desired force-displacement relationship.
机译:本文涉及为解决摩擦弹性接触问题而开发的记忆图方法。我们的目标是在两个任意形状的物体之间建立平面接触的接触力和位移之间的联系。不考虑滚动和扭转。在存在摩擦的情况下,两个固体之间的机械相互作用的描述是一项艰巨的任务,因为所需的力-位移关系具有滞后性(取决于记忆)。任意改变作用力(或位移)会在接触区域产生繁琐的剪切应力分布,必须对其进行适当的参数化和说明。在这方面,建议考虑使用一种包含存储信息的简单函数形式(称为存储图)来代替复杂的剪应力分布。我们建立了两个积分关系,将力向量和位移向量与内部函数相关性联系起来。积分关系还补充了另外两个用于存储图的演化规则,这些规则最终遵循库仑摩擦定律。在给定的力历史之后,借助这些规则来更新记忆图。然后,所计算的存储图用于更新位移的历史,即产生所需的力-位移关系。

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