Duong Hai M, Yamamoto Namiko, Papavassiliou Dimitrios V, Maruyama Shigeo, Wardle Brian L
Department of Aeronautics and Astronautics, Massachusetts Institute of Technology, USA.
Nanotechnology. 2009 Apr 15;20(15):155702. doi: 10.1088/0957-4484/20/15/155702. Epub 2009 Mar 25.
Directional thermal conductivities of aligned carbon nanotube (CNT) polymer nanocomposites were calculated using a random walk simulation with and without inter-CNT contact effects. The CNT contact effect has not been explored for its role in thermal transport, and it is shown here to significantly affect the effective transport properties including anisotropy ratios. The primary focus of the paper is on the non-isotropic heat conduction in aligned-CNT polymeric composites, because this geometry is an ideal thermal layer as well as constituting a representative volume element of CNT-reinforced polymer matrices in hybrid advanced composites under development. The effects of CNT orientation, type (single-versus multi-wall), inter-CNT contact, volume fraction and thermal boundary resistance on the effective conductivities of CNT composites are quantified. It is found that when the CNT-CNT thermal contact is taken into account, the maximum effective thermal conductivity of the nanocomposites having their CNTs parallel to the heat flux decreases by approximately 4 times and approximately 2 times for the single-walled and the multi-walled CNTs, respectively, at 20% CNT volume fraction.
利用考虑和不考虑碳纳米管(CNT)间接触效应的随机游走模拟,计算了取向碳纳米管聚合物纳米复合材料的定向热导率。尚未探究CNT接触效应在热输运中的作用,本文表明其对包括各向异性比在内的有效输运特性有显著影响。本文的主要关注点是取向CNT聚合物复合材料中的非各向同性热传导,因为这种几何结构是理想的热层,也是正在开发的混合先进复合材料中CNT增强聚合物基体的代表性体积单元。定量分析了CNT取向、类型(单壁与多壁)、CNT间接触、体积分数和热边界电阻对CNT复合材料有效热导率的影响。研究发现,当考虑CNT - CNT热接触时,在CNT体积分数为20%时,其CNT与热流平行的纳米复合材料的最大有效热导率,对于单壁CNT和多壁CNT分别降低约4倍和约2倍。