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Experimental Study on Interfacial Thermal Transport of Multi-Walled Carbon Nanotube

机译:多孔碳纳米管界面传热的实验研究

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Interfacial thermal transport of multi-walled carbon nanotube is explored by using T-type sensor. Reliable signals of heat flow through an individual nanotube were obtained. Estimated thermal boundary resistances between the end of CNT and solid surfaces do not show the clear dependency on material that has been predicted by the diffuse mismatch model treating graphite. This discrepancy is mainly due to the weak van der Waals force at the contact. The heat transfer coefficients of nanotube in gases were also measured by applying the T-type sensor and fin theory. Obtained results show good agreement with the kinetic theory for various gases but a large deviation was found for low pressure regime.
机译:利用T型传感器探索了多壁碳纳米管的界面热传递。获得了可靠的热流经单个纳米管的信号。碳纳米管末端与固体表面之间的估计热边界电阻并未显示出对材料的明确依赖性,这已由处理石墨的扩散失配模型预测得出。这种差异主要是由于接触处的范德华力弱所致。气体中纳米管的传热系数也通过应用T型传感器和鳍片理论进行了测量。所得结果表明,与各种气体的动力学理论吻合良好,但在低压状态下,发现偏差较大。

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