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A four-phase confocal elliptical cylinder model for predicting the effective thermal conductivity of coated fibre composites

机译:四相共焦椭圆圆柱模型,用于预测涂层纤维复合材料的有效导热系数

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摘要

A four-phase confocal elliptical cylinder model is proposed from which a generalised self-consistent method is developed for predicting the thermal conductivity of coated fibre reinforced composites. The method can account for the influence of the fibre section shape ratio on conductivity, and the physical reasonableness of the model is demonstrated by using the fibre distribution function. An exact solution is obtained for thermal conductivity by applying conformal mapping and Laurent series expansion techniques of the analytic function. The solution to the three-phase confocal elliptical model, which simulates composites with idealised fibre-matrix interfaces, is arrived at as the degenerated case. A comparison with other available micromechanics methods, Hashin and Shtrikman's bounds and experimental data shows that the present method provides convergent and reasonable results for a full range of variations in fibre section shapes and for a complete spectrum of the fibre volume fraction. Numerical results show the dependence of the effective conductivities of composites on the aspect ratio of coated fibres and demonstrate that a coating is effective in enhancing the thermal transport property of a composite. The present solutions are helpful to analysis and design of composites.
机译:提出了一种四相共聚焦椭圆圆柱模型,从中建立了一种广义的自洽方法来预测涂层纤维增强复合材料的导热系数。该方法可以解决纤维截面形状比对电导率的影响,并通过纤维分布函数证明了模型的物理合理性。通过应用保形映射和解析函数的Laurent级数展开技术,可以得到精确的导热系数解决方案。作为退化案例,得出了三相共聚焦椭圆模型的解,该模型模拟了具有理想化纤维矩阵界面的复合材料。与其他可用的微力学方法,Hashin和Shtrikman的边界以及实验数据的比较表明,本方法为纤维截面形状的全范围变化和纤维体积分数的完整光谱提供了收敛且合理的结果。数值结果表明,复合材料的有效电导率与涂层纤维的长径比有关,并表明涂层可有效提高复合材料的热传输性能。本解决方案有助于复合材料的分析和设计。

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