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首页> 外文期刊>International Journal of Mechanical Sciences >Modeling of the effect of the void shape on effective ultimate tensile strength of porous materials: Numerical homogenization versus experimental results
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Modeling of the effect of the void shape on effective ultimate tensile strength of porous materials: Numerical homogenization versus experimental results

机译:空隙形状对多孔材料有效极性拉伸强度的建模:数值均匀化与实验结果

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摘要

A numerical homogenization technique and morphological analysis based on the finite element method are used to compute mechanical properties of porous materials. This is achieved by considering two-dimensional matrix containing random distribution of identical non-overlapping circular or elliptical voids. Several microstructure configurations are obtained by varying the voids morphology and the porosity of the matrix. The notion of the representative volume element is used for numerical simulations in order to estimate the morphology effects of the voids on the effective ultimate tensile strength of the called Lotus-Type Porous Metals. A confrontation of the obtained numerical results of the representative microstructures for different morphologies of voids and different porosities to an analytical model and experimental data is performed. Finally, a formula improving the Boccaccini model is proposed to estimate effective tensile strength of porous metals taking into account the voids morphology. (C) 2017 Elsevier Ltd. All rights reserved.
机译:基于有限元法的数值均质化技术和形态学分析用于计算多孔材料的力学性能。这是通过考虑包含相同的非重叠圆形或椭圆空隙的随机分布的二维矩阵来实现。通过改变基质的空隙形态和孔隙率来获得几种微观结构配置。代表性体积元素的概念用于数值模拟,以估计空隙对所谓的莲型多孔金属的有效极限拉伸强度的形态学效应。进行对分析模型的不同形态和不同孔隙率的代表性微观结构的所得数值结果的对抗进行。最后,提出了一种改善Boccaccini模型的公式,以估计考虑到空隙形态的多孔金属的有效拉伸强度。 (c)2017 Elsevier Ltd.保留所有权利。

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