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首页> 外文期刊>International Journal of Solids and Structures >Effects of cell shape and cell wall thickness variations on the elastic properties of two-dimensional cellular solids
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Effects of cell shape and cell wall thickness variations on the elastic properties of two-dimensional cellular solids

机译:泡孔形状和泡孔壁厚变化对二维泡孔固体弹性性能的影响

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摘要

The Voronoi tessellation technique and the finite element method are utilized to investigate the microstructure-property relations of two-dimensional cellular solids having irregular cell shapes and non-uniform cell wall thickness. Twenty finite element models are constructed for each type of honeycomb samples (specimens) to obtain the mean values and standard deviations of the effective elastic properties. Spatially periodic boundary conditions are applied to each specimen containing 360 complete cells. The simulation results indicate that the elastic moduli increase as cell shapes become more irregular, but decrease as cell wall thickness gets less uniform. The Poisson's ratios are insignificantly affected by the presence of these two types of imperfections. The effect of the interaction between the co-existing cell shape and cell wall thickness imperfections on the elastic moduli is found to be weak. Bending remains as the dominant deformation mechanism in a loaded honeycomb having irregular cell shapes and/or non-uniform cell wall thickness. In addition, it is revealed that such imperfect honeycombs can be regarded as isotropic. (C) 2004 Elsevier Ltd. All rights reserved.
机译:利用Voronoi细分技术和有限元方法研究了具有不规则泡孔形状和不均匀泡孔壁厚的二维泡孔固体的微观结构-性质关系。针对每种类型的蜂窝样品(样本)构建二十个有限元模型,以获得有效弹性特性的平均值和标准偏差。将空间周期性边界条件应用于包含360个完整单元格的每个样本。仿真结果表明,弹性模量随着晶胞形状变得更加不规则而增加,但是随着晶胞壁厚度变得不均匀而降低。这两种缺陷的存在对泊松比的影响很小。共存的细胞形状和细胞壁厚度缺陷之间的相互作用对弹性模量的影响被发现是微弱的。在具有不规则孔格形状和/或不均匀孔格壁厚的加载蜂窝中,弯曲仍然是主要的变形机制。另外,揭示出这种不完美的蜂窝可以被认为是各向同性的。 (C)2004 Elsevier Ltd.保留所有权利。

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