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Computational evaluation of effective material properties of composites reinforced by randomly distributed spherical particles

机译:随机分布的球形颗粒增强的复合材料有效材料性能的计算评估

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摘要

The aim of presenting this paper is to evaluate the effective material properties of spherical particle reinforced composites for different volume fractions up to 60%. A numerical homogenization technique based on the finite element method (FEM) with representative volume element (RVE) was used to evaluate the effective material properties with periodic boundary conditions. The numerical approach is based on the FEM and it allows the extension of the composites with arbitrary geometrical inclusion configurations, providing a powerful tool for fast calculation of their effective material properties. Modified random sequential adsorption algorithm (RSA) was used to generate the three-dimensional RVE models of randomly distributed spherical particles. The effective material properties obtained using the numerical homogenization techniques were compared with different analytical methods and good agreement was achieved. Several investigations had been conducted to estimate the influence of the size of spherical particles and of the RVE on effective material properties of spherical particle reinforced composites.
机译:提出本文的目的是评估球形颗粒增强复合材料在不同体积分数(最高60%)下的有效材料性能。基于有限元方法(FEM)和代表性体积元素(RVE)的数值均质化技术用于评估具有周期性边界条件的有效材料性能。数值方法基于有限元法,它允许扩展具有任意几何夹杂物构型的复合材料,为快速计算其有效材料性能提供了强大的工具。改进的随机顺序吸附算法(RSA)用于生成随机分布的球形颗粒的三维RVE模型。使用数值均化技术获得的有效材料性能与不同的分析方法进行了比较,并取得了良好的一致性。已经进行了一些研究,以估计球形颗粒尺寸和RVE对球形颗粒增强复合材料有效材料性能的影响。

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