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碳纳米管复合材料有效热导率模型。

Model for the effective thermal conductivity of carbon nanotube composites.

作者信息

Xue Q Z

机构信息

College of Physics Science and Technology, China University of Petroleum, Dongying, Shandong 257061, People's Republic of China. Department of Materials Science and Engineering, Tsinghua University, Beijing 100084, People's Republic of China.

出版信息

Nanotechnology. 2006 Mar 28;17(6):1655-60. doi: 10.1088/0957-4484/17/6/020. Epub 2006 Feb 27.

Abstract

We present a novel model of the effective thermal conductivity for carbon nanotube composites by incorporating the interface thermal resistance with an average polarization theory. The dependence of the effective thermal conductivity on nanotube length, diameter, concentration, and interface thermal resistance has been taken care of simultaneously in our treatment. The model predicts that the large length of the carbon nanotubes embedded plays a key role in the thermal conductivity enhancement, while the large interface thermal resistance across the nanotube-matrix interface causes a significant degradation. Interestingly, the model predicts that the nanotube diameter has a very small effect on the thermal conductivity enhancement of the nanotube composites. In addition, the model predicts that the thermal conductivity enhancement of nanotube composites increases rapidly with decreasing the thermal conductivity of the matrix and increases with increasing the thermal conductivity of the carbon nanotube. Predictions from the novel model are in excellent agreement with the experimentally observed values of the effective thermal conductivity of carbon nanotube nanofluids which the classical models have not been able to explain.

摘要

我们通过将界面热阻与平均极化理论相结合,提出了一种用于碳纳米管复合材料有效热导率的新型模型。在我们的处理中,同时考虑了有效热导率对纳米管长度、直径、浓度和界面热阻的依赖性。该模型预测,嵌入的碳纳米管的大长度在热导率增强中起关键作用,而跨纳米管-基体界面的大界面热阻会导致显著的降低。有趣的是,该模型预测纳米管直径对纳米管复合材料的热导率增强影响非常小。此外,该模型预测纳米管复合材料的热导率增强随着基体热导率的降低而迅速增加,并随着碳纳米管热导率的增加而增加。新模型的预测与碳纳米管纳米流体有效热导率的实验观测值非常吻合,而经典模型无法解释这些观测值。

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