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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >A Micromechanics Model for the Thermal Conductivity of Nanotube-Polymer Nanocomposites
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A Micromechanics Model for the Thermal Conductivity of Nanotube-Polymer Nanocomposites

机译:纳米管-聚合物纳米复合材料导热系数的微力学模型

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摘要

A micromechanics approach for assessing the impact of an interfacial thermal resistance, also known as the Kapitza resistance, on the effective thermal conductivity of carbon nanotube-polymer nanocomposites is applied, which includes both the effects of the presence of the hollow region of the carbon nanotube (CNT) and the effects of the interactions amongst the various orientations of CNTs in a random distribution. The interfacial thermal resistance is a nanoscale effect introduced in the form of an interphase layer between the CNT and the polymer matrix in a nanoscale composite cylinder representative volume element to account for the thermal resistance in the radial direction along the length of the nanotube. The end effects of the interfacial thermal resistance are accounted for in a similar manner through the use of an interphase layer between the polymer and the CNT ends. Resulting micromechanics predictions for the effective thermal conductivity of polymer nanocomposites with randomly oriented CNTs, which incorporate input from molecular dynamics for the interfacial thermal resistance, demonstrate the importance of including the hollow region in addition to the interfacial thermal resistance, and compare well with experimental data.
机译:应用了一种微机械方法来评估界面热阻(也称为Kapitza电阻)对碳纳米管-聚合物纳米复合材料有效导热率的影响,该方法包括存在碳纳米管中空区域的两种影响(CNT)以及随机分布的CNT各个方向之间相互作用的影响。界面热阻是纳米级效应,以纳米级复合圆柱体代表体积元素中的CNT与聚合物基体之间的相层形式引入,以说明沿纳米管长度方向沿径向的热阻。通过在聚合物和CNT末端之间使用相间层,以类似的方式解决了界面热阻的最终影响。对随机取向的CNT的聚合物纳米复合材料的有效导热系数的最终微力学预测,结合了分子动力学输入的界面热阻,证明了除了界面热阻之外还包括空心区域的重要性,并与实验数据进行了比较。

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