Tsinghua-Foxconn Nanotechnology Research Center and Department of Physics , Tsinghua University , Beijing 100084 , China.
Energy Conversion Research Center, Qian Xuesen Laboratory of Space Technology , China Academy of Space Technology , Beijing 100094 , China.
Nano Lett. 2018 Mar 14;18(3):1770-1776. doi: 10.1021/acs.nanolett.7b04933. Epub 2018 Mar 1.
Carbon nanotubes (CNTs) and other related CNT-based materials with a high thermal conductivity can be used as promising heat dissipation materials. Meanwhile, the miniaturization and high functionality of portable electronics, such as laptops and mobile phones, are achieved at the cost of overheating the high power-density components. The heat removal for hot spots occurring in a relatively narrow space requires simple and effective cooling methods. Here, an auxiliary passive cooling approach by the aid of a flat plate (aluminum-magnesium alloy) is investigated to accommodate heat dissipation in a narrow space. The cooling efficiency can be raised to 43.5%. The cooling performance of several CNT-based samples is compared under such circumstances. Heat dissipation analyses show that, when there is a nearby plate for cooling assistance, the heat radiation is weakened and natural convection is largely improved. Thus, improving heat radiation by increasing emissivity without reducing natural convection can effectively enhance the cooling performance. Moreover, the decoration of an auxiliary cooling plate with sprayed CNTs can further improve the cooling performance of the entire setup.
碳纳米管(CNTs)和其他具有高热导率的相关 CNT 基材料可用作有前途的散热材料。同时,笔记本电脑和手机等便携式电子产品的小型化和多功能化是以高功率密度组件过热为代价的。对于在相对较窄的空间中出现的热点,需要采用简单有效的冷却方法。在这里,通过辅助的平板(铝镁合金)来辅助被动冷却方法来适应在狭窄空间中的散热。冷却效率可提高到 43.5%。在这种情况下,比较了几种基于 CNT 的样品的冷却性能。散热分析表明,当有附近的平板进行冷却辅助时,热辐射会减弱,自然对流会得到很大改善。因此,通过提高发射率而不降低自然对流来改善热辐射,可以有效地提高冷却性能。此外,用喷涂 CNT 来装饰辅助冷却板可以进一步提高整个装置的冷却性能。