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Strong coupling methods in multi-phase and multi-scale modeling of inelastic behavior of heterogeneous structures

机译:非均质结构非弹性行为多相和多尺度建模中的强耦合方法

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摘要

In this work we address several issues pertaining to efficiency of the computational approach geared towards modeling of inelastic behavior of a heterogeneous structure, which is represented by a multi-scale model. We elaborate in particular upon the case where the scales remain coupled throughout the computations, implying a constant communication between the finite element models employed at each scale, and only briefly comment upon our treatment of inelastic analysis of a more classical case where the scales can be separated. We also discuss different manners of representing a complex multi-phase microstructure within the framework of the finite element model constructed at that scale, selecting a model problem of two-phase material where each phase has potentially different inelastic behavior. Several numerical examples are given to further illustrate the presented theoretical considerations.
机译:在这项工作中,我们解决了一些与计算方法效率有关的问题,这些方法适用于以多尺度模型表示的非均质结构的非弹性行为建模。我们特别阐述了在整个计算过程中尺度始终保持耦合的情况,这意味着在每种尺度下使用的有限元模型之间的恒定联系,并且仅简要评论了我们对尺度可以为的更经典情况的非弹性分析的处理。分开。我们还讨论了在以该比例尺构建的有限元模型的框架内表示复杂的多相微观结构的不同方式,选择了两相材料的模型问题,其中每相具有潜在不同的非弹性行为。给出了几个数值示例,以进一步说明所提出的理论考虑。

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