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Micro-mechanical approach and algorithm for the study of damage appearance in elastomer composites

机译:研究弹性体复合材料损伤外观的微机械方法和算法

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This paper aims with the development of a numerical non-incremental algorithm well suited for the homogenization of nonlinearly elastic composites. On the one hand it allows to obtain the macroscopic behavior of such composites, without any numerical overcasts and on the other hand to estimate with a good accuracy the local forces sustained by the composite constituents. This latter property is very helpful in a further step when dealing with the simulation of damage evolution in structures of industrial relevance. In order to illustrate these homogenization and fast solution algorithm, they are both applied to the case of unidirectional composites. Thanks to the sue of the finite element technique, the homogenized responses corresponding to some macroscopic loading are first computed. Next, the analysis of three kinds of damage, which may be expected in such composites, is carried out. Finally the numerical performances of the proposed algorithm are presented and compared to these induced by an incremental algorithms.
机译:本文旨在开发一种非常适合非线性弹性复合材料均质化的数值非增量算法。一方面,它允许获得这种复合材料的宏观性能,而没有任何数值叠加,另一方面,可以很好地估计复合材料成分所承受的局部力。在处理与工业相关的结构中的损坏演变的模拟时,后一特性在进一步的步骤中非常有帮助。为了说明这些均质化和快速求解算法,将它们都应用于单向复合材料的情况。由于采用了有限元技术,因此首先要计算出对应于某些宏观载荷的均匀化响应。接下来,对这种复合材料中可能发生的三种损坏进行了分析。最后,给出了所提出算法的数值性能,并将其与增量算法的数值性能进行了比较。

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