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Peridynamics with Corrected Boundary Conditions and Its Implementation in Multiscale Modeling of Rolling Contact Fatigue

机译:具有矫正边界条件的白启动力及其在多尺度滚动接触疲劳造型中的实施

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摘要

There is a boundary effect due to incomplete horizons of boundary or near-boundary points in peridynamics. In this paper, we propose to attach “fictitious walls” to boundary surfaces so that the boundary effect can be reduced or eliminated. Differing from the concept of “fictitious material layers”, which is only attached to displacement boundary surfaces, “fictitious walls” are attached to both displacement and force boundary surfaces. Three types of fictitious walls are considered in this paper: undeformed, deformed, and periodic. It is recommended to attach “undeformed fictitious walls” to displacement boundaries and “deformed fictitious walls” to force boundaries. “Periodic fictitious walls” are suggested for use in peristatics only. In addition, peridynamics with corrected boundary conditions is then implemented in a hierarchical multiscale method to study rolling contact fatigue. In this hierarchical multiscale framework, the coefficient of friction is passed from molecular dynamics simulations to peridynamics, which models crack initiation and propagation in rolling contact simulations.
机译:由于白颌骨中的边界或近边界点的不完全视野,存在边界效应。在本文中,我们建议将“虚构墙体”附加到边界表面,以便可以减少或消除边界效果。与仅附着在位移边界表面上的“虚拟材料层”的概念不同,“虚拟壁”附着到两个位移和力边界表面上。本文考虑了三种类型的虚拟墙壁:未变形,变形和周期性。建议将“未变形的虚构墙”附加到位移边界和“变形虚拟墙壁”以强制边界。 “定期虚构墙”建议仅用于蠕虫学。此外,随后在分层多尺度方法中实施具有校正边界条件的白启动力,以研究滚动接触疲劳。在该分层多尺度框架中,摩擦系数从分子动力学模拟到白颌动态,这在滚动接触模拟中模拟了裂纹启动和传播。

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