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Hashin-Shtrikman based FE analysis of tie elastic behaviour of finite random composite bodies

机译:基于Hashin-Shtrikman的有限随机复合材料体结合弹性行为的有限元分析

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摘要

This paper demonstrates the effect of non-local interactions in an edge-cracked body made of composite material, in the case that the scale of the body is not large in comparison with the scale of the microstructure, as can occur, for example, in laboratory testing of concrete specimens. Not only are there significant boundary layers in the vicinity of all of the specimen boundaries, but the small size of the body permits their interaction, to alter the value of the mean field globally relative to the value that would be predicted by the use of "ordinary" homogenization, under conditions of "displacement control". Such an effect would be present even for an uncracked body but the presence of the crack induces strong gradients in the mean field which significantly enhance this effect. The mean strain component tends to become concentrated around the line ahead of the crack in comparison with the prediction of homogenization; there is, in addition, an enhancement of the stress and strain concentrations in the harder phase. The method of analysis is a finite-element implementation of a variational formulation related to the Hashin-Shtrikman variational principle, developed in the context of non-local effective response by the present authors. The present calculations are considered to be more accurate than some previously reported (Luciano and Willis, Journal of the Mechanics and Physics of Solids 53, 1505-1522, 2005) and the conclusions differ correspondingly.
机译:本文证明了在由复合材料制成的边缘裂开的物体中非局部相互作用的影响,在这种情况下,例如,在物体的尺度与微观结构的尺度相比不大的情况下,混凝土标本的实验室测试。不仅所有标本边界附近都存在明显的边界层,而且小巧的物体允许它们相互作用,从而相对于使用“ “位移控制”条件下的“普通”均质化。甚至对于未破裂的物体也将存在这种效果,但是裂纹的存在会在平均场中引起强烈的梯度,从而大大增强了这种效果。与均质化的预测相比,平均应变分量倾向于集中在裂纹之前的线上。另外,在较硬相中的应力和应变集中也增加了。分析方法是与Hashin-Shtrikman变分原理相关的变分公式的有限元实现,该变分公式是在本作者的非局部有效响应的背景下开发的。目前的计算被认为比以前的报告更为准确(Luciano和Willis,Journal of the Mechanics and Physics of Solids 53,1505-1522,2005),其结论也有所不同。

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