首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >A closed-form model for estimating the effective thermal conductivities of carbon nanotube-polymer nanocomposites
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A closed-form model for estimating the effective thermal conductivities of carbon nanotube-polymer nanocomposites

机译:一种用于估计碳纳米管 - 聚合物纳米复合材料的有效导热性的闭合模型

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摘要

This paper describes a closed-form unit cell micromechanical model for estimating the effective thermal conductivities of unidirectional carbon nanotube reinforced polymer nanocomposites. The model incorporates the typically observed misalignment and curvature of carbon nanotubes into the polymer nanocomposites. Also, the interfacial thermal resistance between the carbon nanotube and the polymer matrix is considered in the nanocomposite simulation. The micromechanics model is seen to produce reasonable agreement with available experimental data for the effective thermal conductivities of polymer nanocomposites reinforced with different carbon nanotube volume fractions. The results indicate that the thermal conductivities are strongly dependent on the waviness wherein, even a slight change in the carbon nanotube curvature can induce a prominent change in the polymer nanocomposite thermal conducting behavior. In general, the carbon nanotube curvature improves the nanocomposite thermal conductivity in the transverse direction. However, using the straight carbon nanotubes leads to maximum levels of axial thermal conductivities. With the increase in carbon nanotube diameter, an enhancement in nanocomposite transverse thermal conductivity is observed. Also, the results of micromechanical simulation show that it is necessary to form a perfectly bonded interface if the full potential of carbon nanotube reinforcement is to be realized.
机译:本文描述了一种闭合单元单元微机械模型,用于估计单向碳纳米管增强聚合物纳米复合材料的有效热导率。该模型将碳纳米管的典型观察到的未对准和曲率掺入聚合物纳米复合材料中。而且,在纳米复合材料模拟中考虑碳纳米管和聚合物基质之间的界面热阻。看到微机械模型与具有不同碳纳米管体积级分强化的聚合物纳米复合材料的有效热导体的可用实验数据产生合理的一致性。结果表明,热导体强烈依赖于波纹,其中碳纳米管曲率的微小变化可以诱导聚合物纳米复合材料热传导行为的突出变化。通常,碳纳米管曲率在横向方向上提高了纳米复合导热率。然而,使用直碳纳米管导致最大水平的轴向热导体。随着碳纳米管直径的增加,观察到纳米复合材料横向导热率的增强。而且,微机械模拟结果表明,如果要实现碳纳米管加强件的全部电位,则必须形成完全粘合的界面。

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