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Prediction of effective through-thickness thermal conductivity of woven fabric reinforced composites with embedded particles

机译:嵌入颗粒的机织增强复合材料的有效全厚度导热系数的预测

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A detailed three dimensional finite element model is used to predict the through-thickness thermal conductivity of a composite consisting of a woven fabric and matrix and compared with existing analytical two component models. It is found that Pilling's constitutive model for two phase system agrees well with the numerical predictions. Then uniformly or randomly distributed conductive particles are introduced in the matrix and the effective thermal conductivity of this three-phase system is evaluated numerically. A unified hybrid constitutive model is proposed for the through-thickness thermal conductivity prediction for the particle embedded woven fabric system, incorporating a combination of generalized rule of mixtures and Pilling model to address a wide range of particle volumes and particle and fiber thermal conductivities. The proposed model can be used as a simple guideline to estimate the through-thickness thermal conductivity of such three component composite structures with woven fabrics, particles and matrices. (C) 2015 Elsevier Ltd. All rights reserved.
机译:详细的三维有限元模型用于预测由机织织物和基体组成的复合材料的全厚度热导率,并将其与现有的分析两成分模型进行比较。研究发现,皮林两相体系的本构模型与数值预测吻合良好。然后将均匀或无规分布的导电颗粒引入基质中,并通过数值评估该三相系统的有效导热系数。提出了一种统一的混合本构模型,用于颗粒嵌入机织物系统的全厚度热导率预测,结合了混合物的一般化规则和起球模型的组合,从而解决了大范围的颗粒体积以及颗粒和纤维的热导率问题。所提出的模型可以用作简单的准则,以估计具有机织物,颗粒和基质的这种三组分复合结构的全厚度热导率。 (C)2015 Elsevier Ltd.保留所有权利。

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