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首页> 外文期刊>Modelling and simulation in materials science and engineering >Simulation of laminate composites degradation using mesoscopic non-local damage model and non-local layered shell element
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Simulation of laminate composites degradation using mesoscopic non-local damage model and non-local layered shell element

机译:使用介观非局部损伤模型和非局部分层壳单元模拟层压复合材料的降解

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摘要

Simulating damage and failure of laminate composites structures often fails when using the standard finite element procedure. The difficulties arise from an uncontrolled mesh dependence caused by damage localization and an increase in computational costs. One of the solutions to the first problem, widely used to predict the failure of metallic materials, consists of using non-local damage constitutive equations. The second difficulty can then be solved using specific finite element formulations, such as shell element, which decrease the number of degrees of freedom. The main contribution of this paper consists of extending these techniques to layered materials such as polymer matrix composites. An extension of the non-local implicit gradient formulation, accounting for anisotropy and strati. cation, and an original layered shell element, based on a new partition of the unity, are proposed. Finally the efficiency of the resulting numerical scheme is studied by comparing simulation with experimental results.
机译:使用标准有限元程序时,模拟层压复合材料结构的损坏和破坏通常会失败。这些困难是由于损坏的局部化和计算成本的增加所引起的不受控制的网格依赖性而引起的。解决第一个问题的方法之一是广泛使用来预测金属材料的失效,其中包括使用非局部损伤本构方程。然后可以使用特定的有限元公式(如壳单元)解决第二个难题,这些公式会减少自由度的数量。本文的主要贡献在于将这些技术扩展到层状材料,例如聚合物基复合材料。非局部隐式梯度公式的扩展,考虑了各向异性和地层。阳离子,并基于整体的新分区,提出了一个原始的分层壳单元。最后,通过将仿真与实验结果进行比较,研究了所得数值方案的效率。

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