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Anisotropic thermal diffusivity characterization of aligned carbon nanotube-polymer composites

机译:取向碳纳米管-聚合物复合材料的各向异性热扩散特性

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The anisotropic thermal diffusivity of aligned carbon nanotube-polymer composites was determined using a photothermoelectric technique. The composites were obtained by infiltrating poly-dimethyl siloxane (PDMS) in aligned multiwall CNT arrays grown by chemical vapor deposition on silicon substrates. The thermal diffusivities are insensitive to temperature in the range of 180 K-300 K. The thermal diffusivity values across the alignment direction are similar to 2-4 times smaller than along the alignment direction and larger than effective media theory predictions using reported values for the thermal diffusivity of millimeter thick aligned multiwall carbon nanotube arrays. The effective room temperature thermal conductivity of the composite along the carbon nanotube alignment direction is at least 6X larger than the thermal conductivity of the polymer matrix and is in good agreement with the effective media predictions. This work indicates that infiltration of long and aligned carbon nanotube arrays is currently the most efficient method to obtain high thermal conductivity polymer composites.
机译:使用光热电技术确定了取向碳纳米管-聚合物复合材料的各向异性热扩散率。通过将聚二甲基硅氧烷(PDMS)浸入通过化学气相沉积法在硅基板上生长的取向多壁CNT阵列中获得复合材料。热扩散率对180 K-300 K范围内的温度不敏感。在整个排列方向上的热扩散率值大约是沿着排列方向的2-4倍,并且比有效介质理论预测值高(使用报告的热值)毫米厚的对齐多壁碳纳米管阵列的热扩散率。沿着碳纳米管排列方向的复合材料的有效室温导热系数至少比聚合物基体的导热系数大6倍,并且与有效的介质预测高度吻合。这项工作表明,长且对齐的碳纳米管阵列的渗透是目前获得高导热率聚合物复合材料的最有效方法。

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