Hydrodynamics of Drop Impact and Spray Cooling through Nanofiber Mats

Y. Chan, F. Charbel, S. S. Ray, A. Yarin
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引用次数: 1

Abstract

Spray cooling is one of the effective technologies has been promised for the thermal management of microelectronic systems and server rooms. The focus of this research is to increase the heat flux rate from a hot surface by applying a metal-coated electrospun polymer nanofiber mat. Samples were prepared from copper plate substrate coated with electrospun polymer nanofiber mat and electroplated with one of three different metals: nickel, copper and silver. Experiments were performed in which samples were subjected to impacting water droplets from a height of 17.95cm at various temperatures. The behaviors of droplet impact and subsequent evaporation were observed in order to evaluate and compare heat transfer characteristics of the different sample types. Silver-plated samples were found to provide the highest heat flux rate, followed by copper and then nickel. However, silver was not usable at higher temperatures due to its tendency to oxidize and degrade easily.
纳米纤维垫的水滴冲击和喷雾冷却流体动力学研究
喷雾冷却是微电子系统和服务器机房热管理的有效技术之一。本研究的重点是通过应用金属涂层电纺聚合物纳米纤维垫来增加热表面的热流密度。样品是在铜板衬底上涂覆电纺聚合物纳米纤维垫并电镀三种不同金属:镍、铜和银中的一种制备的。实验中,样品在不同温度下受到来自17.95cm高度的水滴的冲击。为了评价和比较不同样品类型的传热特性,观察了液滴撞击和随后蒸发的行为。镀银样品的热通量率最高,其次是铜,然后是镍。然而,由于银容易氧化和降解,在较高的温度下不能使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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