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Representative Volume Element Size of Elastoplastic and Elastoviscoplastic Particle-Reinforced Composites with Random Microstructure

机译:具有随机微观结构的弹塑性和弹黏塑性颗粒增强复合材料的代表性体积元素尺寸

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摘要

With the progress of miniaturization, in many modern applications the characteristic dimensions of the physical volume occupied by particle-reinforced composites are getting comparable with the reinforcement size and many of those composite materials undergo plastic deformations. In both experimental and modelling contexts, it is therefore very important to know whether, and up to which characteristic size, the description of the composites in terms of effective, homogenized properties is sufficiently accurate to represent their response in the actual geometry. Herein, the case of particle-reinforced composites with elastoviscoplastic matrix materials and polyhedral randomly arranged linear elastic reinforcement is considered since it is representative of many metal matrix composites of technical interests. A large parametric study based on 3D finite element microstructural models is carried out to study the dependence of the Representative Volume Element (RVE) size on the mechanical properties of the constituents, the reinforcement volume fraction and the average strain level. The results show that RVE size mainly depends on the reinforcement volume fraction and on the macroscopic strain level. The estimated RVE size for elastoplastic composites with 5% to 10% volume fraction of reinforcements is found in the range of 5-6 times the average size of reinforcement particles, while for higher volume fraction, e.g. 15% to 25%vol., the RVE size increases rapidly to 10 to 20 times the reinforcement size. Moreover insights on the influence of mesh refinement and boundary conditions on finite element homogenization analysis are obtained.
机译:随着小型化的发展,在许多现代应用中,颗粒增强复合材料所占据的物理体积的特征尺寸正变得与增强体尺寸相当,并且这些复合材料中的许多经历了塑性变形。因此,在实验和建模环境中,了解复合物有效且均质的描述是否足够准确,以表示它们在实际几何形状中的响应,以及对于哪种特征尺寸而言,非常重要。在本文中,考虑了具有弹性粘塑性基质材料和多面体随机排列的线性弹性增强物的颗粒增强复合物的情况,因为它代表了许多具有技术意义的金属基质复合物。进行了基于3D有限元微观结构模型的大型参数研究,以研究代表体积元(RVE)尺寸对成分的机械性能,钢筋体积分数和平均应变水平的依赖性。结果表明,RVE尺寸主要取决于钢筋体积分数和宏观应变水平。发现具有5%至10%的增强体体积分数的弹塑性复合材料的估计RVE尺寸为增强体颗粒平均尺寸的5-6倍,而对于更高的体积分数,例如5%。 15%至25%vol。,RVE尺寸迅速增加到增强尺寸的10到20倍。此外,还获得了关于网格细化和边界条件对有限元均匀化分析的影响的见解。

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