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Anisotropic thermal conductivity of aligned GNPs/polymer composites:a finite element approach

机译:对齐的GNP /聚合物复合材料的各向异性导热系数:有限元方法

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In this article, we propose a 3D FEM model to analyze the anisotropic thermal behavior of oriented GNPs/polymer composites. The model considers the effect of microstructural characteristics such as the shape and aspect ratio of filler, interfacial thermal resistance, volume fraction, dispersion state and orientation of GNPs dispersion to simulate a steady state heat flow in the composite. In the simulation model, the composite is treated as a cubic unit cell and GNPs are modeled as oblate spheroid with a long axis diameter of lμm and the aspect ratio is in the range of 0.01 to 0.05. The oblate spheroids align in the cubic to represent the microstructure of the oriented GNPs/polymer composites. By varying the number of the GNPs in the representative unit cell, the volume fractions of fillers are determined. The simulation results show that the parallel thermal conductivity (//) increase in a nonlinear trend and the perpendicular thermal conductivity (⊥) is slightly linear increasing. Compared with experimental results, the trends predicted by the finite element models are consistent.
机译:在本文中,我们提出了一个3D有限元模型来分析取向GNP /聚合物复合材料的各向异性热行为。该模型考虑了微观结构特征(例如填料的形状和长宽比,界面热阻,体积分数,分散状态和GNP分散方向)的影响,以模拟复合材料中的稳态热流。在模拟模型中,将复合材料视为立方晶胞,将GNP建模为长轴直径为1μm的扁球形,长宽比在0.01到0.05的范围内。扁球形在立方体中排列以表示取向的GNP /聚合物复合材料的微观结构。通过改变代表性晶胞中GNP的数量,可以确定填料的体积分数。仿真结果表明,平行热导率(//)呈非线性趋势增加,垂直热导率(⊥)呈线性增长趋势。与实验结果相比,有限元模型预测的趋势是一致的。

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