首页> 外文会议>HTD-vol.376-2; ASME(American Society of Mechanical Engineers) International Mechanical Engineering Congress and Exposition; 20051105-11; Orlando,FL(US) >VERTICALLY ALIGNED MULTI-WALLED CARBON NANOTUBE ARRAYS AS THERMAL INTERFACE MATERIALS AND MEASUREMENT TECHNIQUE
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VERTICALLY ALIGNED MULTI-WALLED CARBON NANOTUBE ARRAYS AS THERMAL INTERFACE MATERIALS AND MEASUREMENT TECHNIQUE

机译:垂直对齐的多壁碳纳米管阵列作为热界面材料和测量技术

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摘要

State-of-the-art thermal interface materials are briefly reviewed with an emphasis on the emerging trend of using carbon nanotubes to increase interface thermal performance. Vertically aligned multi-walled carbon nanotube (MWCNT) arrays were grown and applied as thermal interfacial enhancing materials. It is expected that the highly thermally conductive channels directly bridging the mating surfaces would significantly enhance the interface thermal conductance. We extended the all-optical pump and probe phase sensitive transient thermo-reflectance (PSTTR) method and used it to measure the interfacial properties of a three-layer sample of a vertically aligned MWCNT array grown on silicon (Si) substrate dry adhered to a glass plate. The dominant thermal resistance is identified as the dry adhered MWCNT-glass interface with a thermal conductance of ~5.9x10~4 W/m~2·K, compared with MWCNT-Si interface of almost two orders of magnitude higher. Tentative explanations on the difference in the two interfaces and ways for future improvements are provided. The PSTTR measurement principle and issues are also discussed in the context.
机译:简要回顾了最新的热界面材料,重点介绍了使用碳纳米管提高界面热性能的新兴趋势。生长垂直排列的多壁碳纳米管(MWCNT)阵列,并将其用作热界面增强材料。期望直接桥接配合表面的高导热通道将显着增强界面导热。我们扩展了全光泵浦和探针相敏瞬态热反射(PSTTR)方法,并用它来测量在粘附到硅(Si)衬底上生长的垂直排列的MWCNT阵列的三层样品的界面特性玻璃盘。主要的热阻被确定为干粘附的MWCNT-玻璃界面,其导热系数约为5.9x10〜4 W / m〜2·K,比MWCNT-Si界面高出近两个数量级。简要说明了这两个界面的差异以及将来的改进方法。本文还将讨论PSTTR的测量原理和问题。

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