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Applying Aluminum–Vertically-Aligned Carbon Nanotube Forests Composites for Heat Dissipation

机译:铝-垂直排列的碳纳米管森林复合材料的散热应用

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摘要

Vertically-aligned carbon nanotube forests (VACNTs) with excellent axial heat dissipation properties were formed on aluminum foil to dissipate heat. In addition, the heat dissipation efficiency of aluminum–VACNTs composites in this work was compared with that of commercially available mainstream thermal sheets under the same natural cooling conditions. Chemical vapor deposition (CVD) was employed as a synthesis method using a three-segment high-temperature furnace. Subsequently, the temperature changes in a heating body with the aluminum–VACNTs composites was measured over time subject to natural cooling. In addition, the performance was compared with copper and pyrolytic graphite sheets. The experimental results revealed that the heat dissipation efficiency of the flexible aluminum–VACNTs composites was higher than that of clean aluminum foil, a copper sheet, and a pyrolytic graphite sheet by up to 56%, 40%, and 20%, respectively. Moreover, this work also verified the height of the carbon nanotube (CNT) did not influence the heat dissipation efficiency, indicating that the time cost of synthesis could be reduced.
机译:在铝箔上形成具有出色的轴向散热特性的垂直排列的碳纳米管森林(VACNT),以进行散热。此外,在相同的自然冷却条件下,将铝-VACNTs复合材料的散热效率与市售主流导热板的散热效率进行了比较。使用化学气相沉积(CVD)作为使用三段高温炉的合成方法。随后,在自然冷却下,测量随时间变化的铝-VACNTs复合材料在加热体中的温度变化。另外,将性能与铜和热解石墨片进行了比较。实验结果表明,柔性铝-VACNTs复合材料的散热效率分别比干净的铝箔,铜板和热解石墨板高出56%,40%和20%。此外,这项工作还证明了碳纳米管(CNT)的高度不影响散热效率,表明可以减少合成的时间成本。

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