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A framework for the analysis of fully coupled normal and tangential contact problems with complex interfaces

机译:复杂接口完全耦合正常和切向接触问题的框架

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An extension to the interface finite element with eMbedded Profile for Joint Roughness (MPJR interface finite element) is herein proposed for solving the frictional contact problem between a rigid indenter of any complex shape and an elastic body under generic oblique load histories. The actual shape of the indenter is accounted for as a correction of the gap function. A regularised version of the Coulomb friction law is employed for modeling the tangential contact response, while a penalty approach is introduced in the normal contact direction. The development of the finite element (FE) formulation stemming from its variational formalism is thoroughly derived and the model is validated in relation to challenging scenarios for standard (alternative) finite element procedures and analytical methods, such as the contact with multi-scale rough profiles. The present framework enables the comprehensive investigation of the system response due to the occurrence of tangential tractions, which are at the origin of important phenomena such as wear and fretting fatigue, together with the analysis of the effects of coupling between normal and tangential contact tractions. This scenario is herein investigated in relation to challenging physical problems involving arbitrary loading histories.
机译:本文提出了一种具有用于关节粗糙度(MPJR接口有限元件)的嵌入式轮廓的接口有限元件的延伸,用于求解任何复杂形状的刚性凹入与通用倾斜载荷历史下的弹性体之间的摩擦接触问题。缩进的实际形状被算作作为间隙功能的校正。采用正则化的库仑摩擦法用于建模切向接触响应,而处罚方法是在正常接触方向上引入的。彻底地推导出来自其变分形式的有限元(Fe)制剂的开发,并且该模型与标准(替代)有限元程序和分析方法的具有挑战性的情况有关,例如与多尺度粗糙型材的接触。本框架可以通过切向诉讼的发生,全面调查系统响应,这些框架是在切向诉讼的起源,如磨损和微动疲劳的重要现象的起源,以及分析正常和切向接触牵引之间的耦合效果。此方案在此研究关于涉及任意装载历史的具有挑战性的体力问题。

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