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Stochastic finite element analysis of composite structures based on material microstructure

机译:基于材料微观结构的复合材料结构随机有限元分析

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摘要

The linking of microstructure uncertainty with the random variation of material properties at the macroscale is particularly needed in the framework of the stochastic finite element method (SFEM) where arbitrary assumptions are usually made regarding the probability distribution and correlation structure of the macroscopic mechanical properties. This linking can be accomplished in an efficient manner by exploiting the excellent synergy of the extended finite element method (XFEM) and Monte Carlo simulation (MCS) for the computation of the effective properties of random two-phase composites. The homogenization is based on Hill's energy condition and involves the generation of a large number of random realizations of the microstructure geometry based on a given volume fraction of the inclusions and other parameters (shape, number, spatial distribution and orientation). In this paper, the mean value, coefficient of variation and probability distribution of the effective elastic modulus and Poisson ratio are computed taking into account the material microstructure. The effective properties are used in the framework of SFEM to obtain the response of a composite structure and it is shown that the response variability can be significantly affected by the random microstructure. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在随机有限元方法(SFEM)的框架中,特别需要将微观结构不确定性与宏观尺度上材料特性的随机变化联系起来,其中通常对宏观力学特性的概率分布和相关结构做出任意假设。通过利用扩展有限元方法(XFEM)和蒙特卡洛模拟(MCS)的出色协同作用来计算随机两相复合材料的有效性能,可以有效地完成此链接。均质化基于Hill的能量条件,并且涉及基于给定的夹杂物体积分数和其他参数(形状,数量,空间分布和方向)生成大量的微观结构几何随机实现。在本文中,考虑了材料的微观结构,计算了有效弹性模量和泊松比的平均值,变异系数和概率分布。在SFEM框架中使用有效特性来获得复合结构的响应,并且表明随机微结构会显着影响响应的可变性。 (C)2015 Elsevier Ltd.保留所有权利。

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