A Critical Assessment of Nano Enhanced Vapor Chamber Wick Structures for Electronics Cooling

Markus Enmark, Yifeng Fu, T. Nilsson, Johan Liu
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Abstract

The increasing need for high thermal dissipation in small electronic products puts tough requirements on effective cooling solutions. Two of the most effective passive cooling devices in electronics today are vapor chambers and heat pipes. With new advancements in materials science and nanotechnology comes the possibility to further increase cooling capacity and at the same time make devices lighter. This study is a critical assessment on recent progress in the field of nanomaterial enhanced wick structures in vapor chambers and heat pipes. In this paper, nano-enhanced wick structures are divided into five different sub-categories based on material type. Publication trends for the different types of nano-enhanced wicks are studied by plotting them on a timeline. It is found that nanostructured metal wicks is the most studied field in recent years. A plot showing wick performance in terms of superheat temperatures for given heat flux is created to be used for benchmarking of new wick structures when pool boil experiments are carried out. An attempt to find correlation between publication trends, type of wick and performance is done. On the basis of the gathered data it is deemed difficult to find a distinct correlation, this is mainly due to difficulty in comparing performance between different studies, especially when different heat fluxes are used. There is no unambiguous answer to which category of nano-enhanced wicks that should be target for future studies. Graphene coating and pure carbon nanomaterials such as aerogels and graphene foam are still relatively unexplored and believed to have great potential if they can be attached to envelope materials.
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电子冷却用纳米增强蒸汽室芯结构的关键评估
小型电子产品对高散热的需求日益增加,对有效的冷却解决方案提出了苛刻的要求。当今电子产品中最有效的两种被动冷却装置是蒸汽室和热管。随着材料科学和纳米技术的进步,进一步提高冷却能力,同时使设备更轻成为可能。本研究是对近年来纳米材料增强蒸汽室和热管芯结构研究进展的重要评价。本文根据材料类型将纳米增强芯结构分为五个不同的子类。通过在时间轴上绘制不同类型的纳米增强灯芯的出版趋势来研究它们。纳米结构金属芯是近年来研究最多的领域。绘制了给定热流密度下芯芯性能的过热度图,用于在进行池沸实验时对新芯芯结构进行基准测试。试图找出出版趋势,灯芯类型和性能之间的相关性。根据收集到的数据,很难找到明显的相关性,这主要是由于难以比较不同研究之间的性能,特别是当使用不同的热通量时。对于哪一类纳米增强灯芯应该成为未来研究的目标,目前还没有明确的答案。石墨烯涂层和纯碳纳米材料,如气凝胶和石墨烯泡沫,仍然相对未被开发,如果它们能附着在包壳材料上,相信会有很大的潜力。
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