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首页> 外文期刊>International Journal of Solids and Structures >A statistical micromechanics-based multi-scale framework for effective thermomechanical behaviours of particle reinforced composites
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A statistical micromechanics-based multi-scale framework for effective thermomechanical behaviours of particle reinforced composites

机译:基于统计微力学的多尺度框架,用于颗粒增强复合材料的有效热力学行为

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Particle-reinforced composite materials have been widely used as they can exhibit nearly isotropic material properties and are often easy to process. Some silicon carbide particle reinforced aluminium composites with high volume concentration of reinforcement exhibit excellent thermophysical properties and can be used in advanced electronic packaging. In this paper, a statistical micromechanics-based multi-scale material modelling framework is introduced to describe the macroscopic effective thermomechanical properties of the particle-reinforced composite. The formulation differs from most of the existing methods in that the interaction effects among the reinforcing particles are directly accounted for by considering pair-wise interaction and statistical information on particle distribution is included. The strain and stress concentration factor tensors that relate the local average strain and stress fields, respectively, to the corresponding global average fields are derived according to the theory of average fields. The effective coefficient of thermal expansion for the particle-reinforced composite material is derived. Comparisons of the prediction from the proposed framework to the results from other existing methods are presented. The results are expressed in analytical closed-form in terms of the thermal and mechanical properties of the two constituent phases and the volume fraction of particles. No parameter estimation or data fitting is required. (C) 2003 Elsevier Ltd. All rights reserved. [References: 8]
机译:颗粒增强复合材料已被广泛使用,因为它们可以表现出几乎各向同性的材料特性,并且通常易于加工。一些具有高体积浓度的增强剂的碳化硅颗粒增强的铝复合材料表现出出色的热物理性能,可用于先进的电子包装。本文介绍了一种基于统计微力学的多尺度材料建模框架,以描述颗粒增强复合材料的宏观有效热力学性能。该配方与大多数现有方法的不同之处在于,通过考虑成对相互作用来直接考虑增强颗粒之间的相互作用效果,并包括有关颗粒分布的统计信息。根据平均场理论推导了将局部平均应变场和应力场分别与相应的整体平均场相关联的应变和应力集中因子张量。得出了颗粒增强复合材料的有效热膨胀系数。提出的建议框架的预测与其他现有方法的结果的比较。结果以解析的封闭形式表示为两个组成相的热和机械性能以及颗粒的体积分数。不需要参数估计或数据拟合。 (C)2003 Elsevier Ltd.保留所有权利。 [参考:8]

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