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Effect of fiber transverse isotropy on effective thermal conductivity of metal matrix composites reinforced by randomly distributed fibers

机译:纤维横观各向同性对随机分布纤维增强金属基复合材料有效导热系数的影响

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The effective thermal conductivity of metal matrix composites (MMCs) reinforced by the randomly distributed transversely isotropic fibers is evaluated using the representative volume element (RVE) based finite element (FE) homogenization method. The modified random sequential absorption (RSA) algorithm is proposed to generate the periodic RVEs of MMCs and thus the periodic boundary conditions are introduced. The transversely isotropic thermal conductivity of fiber is considered and its numerical implementation in the FE analysis is detailed. The RVE based FE homogenization method to predict the effective thermal conductivity of MMCs reinforced by the randomly distributed fibers is verified by comparing against the experiment and the Hashin-Shtrikman bounds. The simulation results show that the effect of the transverse isotropy of fiber thermal conductivity on the effective thermal conductivity of MMCs reinforced by the randomly distributed fibers can be neglected owing to the large matrix/fiber thermal conductivity ratio. The effective thermal conductivity of MMCs reinforced by the randomly distributed fibers decreases with the increase of fiber volume fraction, while the effect of fiber aspect ratio on the effective thermal conductivity of MMCs reinforced by the randomly distributed fibers is not significant. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用基于代表体积元素(RVE)的有限元(FE)均质化方法评估由随机分布的横向各向同性纤维增强的金属基复合材料(MMC)的有效导热系数。提出了一种改进的随机顺序吸收(RSA)算法来生成MMCs的周期性RVE,从而引入了周期性边界条件。考虑了纤维的横向各向同性热导率,并详细说明了其在有限元分析中的数值实现。通过与实验和Hashin-Shtrikman边界进行比较,验证了基于RVE的有限元均匀化方法来预测由随机分布的纤维增强的MMC的有效导热率。仿真结果表明,由于较大的基体/纤维导热系数,纤维导热系数的横向各向同性对无规分布纤维增强的MMC有效导热系数的影响可以忽略。随纤维体积分数的增加,无序分布纤维增强的MMC的有效导热系数降低,而纤维长径比对无序分布纤维增强的MMC的有效导热系数的影响不显着。 (C)2016 Elsevier Ltd.保留所有权利。

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