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A new fully coupled two-scales modelling for mechanical problems involving micro structure: The 95/5 technique

机译:针对涉及微观结构的机械问题的全新的完全耦合的两尺度模型:95/5技术

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摘要

In this work, we propose a new fully coupled two-scales modelling for mechanical problems involving microstructure which makes use of a meshless constrained natural element approximation for accounting the large and very localized variations in the nodal density. This approach is an appealing choice for treating problems involving a microstructure (requiring fine local descriptions) whose evolution can be accurately described in the macroscopic scale using coarse approximation's. This approach leads to a model where more than 95% of the nodes are in less than 5% of the considered domain volume. The technique proposed in this paper allows considering simultaneously both scales, the one related to the microstructure description and the one related to its evolution (the macroscopic one). Moreover, in contrast to the vast majority of homogenization techniques, the presented approach allows an accurate description of the boundary conditions, because the microscopic domains can be located on the domain boundary.
机译:在这项工作中,我们针对涉及微观结构的机械问题提出了一种新的完全耦合的两尺度模型,该模型利用无网格约束的自然元素近似值来解决节点密度的较大且非常局部的变化。对于处理涉及微观结构(需要精细的局部描述)的问题,可以使用粗略的近似在宏观尺度上准确描述其演变过程,该方法是一种有吸引力的选择。这种方法导致了一个模型,其中有超过95%的节点位于少于所考虑域体积的5%的范围内。本文提出的技术允许同时考虑两个尺度,一个尺度与微观结构描述有关,一个尺度与其演变有关(宏观的)。而且,与绝大多数同质化技术相反,由于微观域可以位于域边界上,因此所提出的方法可以准确描述边界条件。

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