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Effective thermal and mechanical properties of randomly oriented short and long fiber composites

机译:随机取向的短纤维和长纤维复合材料的有效热和机械性能

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摘要

The microstructure studied in this paper is a Composite made up of Randomly oriented Short Fibers (RSFC) and a computational homogenization is performed to investigate its effective properties. The area fraction is also varied to study its effect on the size of the Deterministic Representative Volume Element (DRVE). It appeared that at certain area fractions, the RSFC does not respect the convergence of the apparent properties calculated under different boundary conditions. This indicates that it does not adhere to the definition of the DRVE in the studied range of scale. The concerned area fraction is found to be around the percolation threshold. The present work consists primarily in investigating the causes of this problem by studying an extreme example of a percolating medium which is a Composite made up of Randomly oriented Long Fibers (RLFC). By identifying the contributing factors, the calculability of the DRVE of a random composite can be predicted by simple verification of the microstructure morphology. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文研究的微观结构是由随机取向的短纤维(RSFC)组成的复合材料,并进行了计算均质化以研究其有效性能。面积分数也有所变化,以研究其对确定性代表体积元素(DRVE)大小的影响。似乎在某些面积分数下,RSFC不考虑在不同边界条件下计算出的表观特性的收敛性。这表明在所研究的规模范围内,它不符合DRVE的定义。发现相关面积分数在渗滤阈值附近。目前的工作主要是通过研究渗流介质的极端示例来研究此问题的原因,渗流介质是由随机取向的长纤维(RLFC)组成的复合材料。通过确定影响因素,可以通过对微观结构形态的简单验证来预测无规复合材料的DRVE的可计算性。 (C)2017 Elsevier Ltd.保留所有权利。

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