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Interphase model for FE prediction of the effective thermal conductivity of the composites with imperfect interfaces

机译:界面预测不完善的复合材料有效导热系数的相间模型

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This paper addresses the Finite Element (FE) homogenization of the Effective Thermal Conductivities (ETCs) of the Composites with Imperfect Interfaces (CIIs). To model the imperfect interfaces between the matrix and inclusions in the composites, the thin interphases between the matrix and inclusions are introduced, which are combined with the FE homogenization method to predict the ETCs of the CIIs. The Representative Volume Elements (RVEs) containing the interphases are adopted to characterize the micro-structures of the CIIs and generated by the modified Random Sequential Absorption (RSA) algorithm. Compared with the micro-mechanical models, the proposed interphase model with the FE homogenization method is validated to be able to accurately predict the ETCs of the CIIs. The simulation results demonstrate that the ETCs of the CIIs are size-dependent, and the interphase thickness in the range of 50.0100.0?nm has few impact on the ETCs of the composites. In addition, the ETCs of the CIIs show an asymptotic behavior so that a transition zone and two plateaus zones can be identified for the curves of the ETCs of the CIIs. This work provides a new and simple approach for predicting the ETCs of the CIIs. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文讨论了具有不完善界面(CII)的复合材料的有效导热系数(ETC)的有限元(FE)均匀化。为了模拟复合材料中基体与内含物之间的不完美界面,引入了基体与内含物之间的薄相,并与有限元均化方法相结合来预测CII的ETC。采用包含相间的代表性体积元素(RVE)来表征CII的微观结构,并通过改进的随机顺序吸收(RSA)算法生成。与微机械模型相比,所提出的采用有限元均化方法的相间模型经过验证,能够准确预测CII的ETC。仿真结果表明,CII的ETC与尺寸有关,相间厚度在50.0100.0?nm范围内对复合材料的ETC影响很小。此外,CII的ETC表现出渐近行为,因此可以为CII的ETC的曲线识别出过渡区和两个平稳区。这项工作为预测CII的ETC提供了一种新的简单方法。 (C)2019 Elsevier Ltd.保留所有权利。

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