首页> 外文期刊>Journal of nanoscience and nanotechnology >Effect of Interface, Height and Density of Long Vertically Aligned Carbon Nanotube Arrays on Their Thermal Conductivity: An Experimental Study
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Effect of Interface, Height and Density of Long Vertically Aligned Carbon Nanotube Arrays on Their Thermal Conductivity: An Experimental Study

机译:垂直排列的碳纳米管长阵列的界面,高度和密度对其热导率的影响:实验研究

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摘要

The ever-growing need to dissipate larger amounts of heat from components and structures requires the development of novel materials with superior thermal conductivity. Aligned carbon nanotube arrays that are integrated in composite materials and structures may prove useful in increasing heat transfer through their thickness. Theoretical studies have shown the potential of carbon nanotubes to reach a thermal conductivity of 6600 Wm~(-1)K~(-1). Experimental results on the arrays however have shown much lower thermal conductivity values. A study was conducted to better understand heat conduction in mm-long carbon nanotube arrays and to experimentally determine their thermal conductivity. Emphasis was placed on the effect of various parameters including the height and density of the array and the thermal resistance at the array interface. A method was devised to measure the thermal conductivity of the array relying on Fourier's law while maintaining a steady state one-dimensional heat flow. The study reveals that the taller the array and the higher its density, the larger the thermal conductivity of the array. Quantitative data is also provided on the effect of various interface materials and their deposition technique on the thermal conductivity of the arrays.
机译:从部件和结构散发大量热量的不断增长的需求要求开发具有优异导热性的新型材料。集成在复合材料和结构中的对齐碳纳米管阵列可证明有助于增加其厚度的热传递。理论研究表明,碳纳米管具有达到6600 Wm〜(-1)K〜(-1)的导热系数的潜力。然而,在阵列上的实验结果显示出低得多的热导率值。进行了一项研究,以更好地了解毫米长的碳纳米管阵列中的热传导并通过实验确定其热导率。重点放在各种参数的影响上,包括阵列的高度和密度以及阵列界面处的热阻。设计了一种方法,可在保持稳态一维热流的同时,根据傅立叶定律测量阵列的热导率。研究表明,阵列越高,其密度越高,阵列的热导率越大。还提供了有关各种界面材料及其沉积技术对阵列热导率的影响的定量数据。

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