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New exact multi-coated ellipsoidal inclusion model for anisotropic thermal conductivity of composite materials

机译:复合材料各向异性导热系数的新精确多涂层椭圆形包涵模型

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摘要

The present study deals with a new micromechanical modeling of the thermal conductivity of multi-coated inclusion-reinforced composites. The proposed approach has been developed in the general frame of anisotropic thermal behavior per phase and arbitrary ellipsoidal inclusions. Based on the Green's function technique, a new formulation of the problem of multi-coated inclusion is proposed. This formulation consists in constructing a system of integral equations, each associated to the thermal conductivity of each coating and the reference medium. Thanks to the concept of interior- and exterior-point Eshelby's conduction tensors, the exact solution of the problem of multicoated inclusion is obtained. Analytical expressions of the intensity in each phase and the effective thermal conductivity of the composite, through homogenizations schemes such as Generalized self-consistent and Mori-Tanaka models are provided. Results of the present model are successfully compared with those issued from both analytical models and finite elements methods for composites with doubly coated inclusions. Moreover, the developed micromechanical model has been applied to a three phase composite materials in order to analyze combined effects of the aspect ratio and the volume fraction of the ellipsoidal inclusions, the anisotropy of the thermal conductivity of interphase, the thermal conductivity contrast between local phases on the predicted effective thermal conductivity.
机译:本研究涉及多涂层夹杂物复合材料的导热率的新微机械建模。该拟议方法已在每相和任意椭圆形夹杂物的各向异性热行为框架中开发。基于绿色的功能技术,提出了一种新的配方的多涂层夹杂物问题。该配方包括构建整体方程系统,每个系统与每个涂层的导热率和参考介质相关联。由于内部和外部点eShelby的传导张量的概念,获得了多晶化夹杂物问题的精确解决方案。提供了通过均化的方案如广义自我支撑和森塔卡模型等均化方案的每个相和复合材料的每个相和有效导热率的分析表达。与具有双涂层夹杂物的复合材料的分析模型和有限元方法相比,本模型的结果成功地与具有双涂层夹杂物的复合材料发布的那些。此外,开发的微机械模型已被应用于三相复合材料,以分析椭圆形夹杂物的纵横比和体积分数的组合效应,相互作用的导热系数的各向异性,局部相之间的导热率对比度在预测有效的导热系数上。

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