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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Effect of powder size on capillary and two-phase heat transfer performance for porous interconnected microchannel nets as enhanced wick for two-phase heat transfer devices
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Effect of powder size on capillary and two-phase heat transfer performance for porous interconnected microchannel nets as enhanced wick for two-phase heat transfer devices

机译:粉末尺寸对多孔互连微通道网作为两相传热装置的增强芯的毛细管和两相传热性能的影响

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摘要

In order to enhance the performance of vapor chamber heat spreaders, porous interconnected microchannel nets (PIMNs) were developed as an enhanced capillary wick by traditional copper powder sintering and wire-electric machining methods. The capillary performance of the PIMNs was characterized using a novel IR-thermal imaging method. The experimental results indicated that the gravitational effect was negligible at the initial capillary rise stage but became increasingly influential at the intermediate stage, implied by the transition of capillary rise kinetic from H(t) similar to t(1/2) to H(t) similar to t(1/3) where H(t) is the capillary height. The sample of 50-75 pm powders exhibited the best capillary performance possibly due to the good balance between the capillary pressure and permeability. The two-phase heat transfer performance of the enhanced wicks was further characterized by pool boiling tests, which revealed that the sample of 50-75 mu m also maximized the heat transfer coefficient, and could be an optimum structural design of the PIMNs. Comparative studies with other enhanced wicks justified that the PIMNs yielded competitive capillary performance, making it a promising alternative as enhanced wick for two-phase devices. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了提高蒸气室散热器的性能,通过传统的铜粉烧结和电线加工方法开发了多孔互连微通道网(PIMN)作为增强的毛细管芯。 PIMN的毛细管性能使用新型的红外热成像方法进行了表征。实验结果表明,重力作用在初始毛细管上升阶段可忽略不计,但在中间阶段逐渐变得有影响力,这暗示着毛细管上升动力学从类似于t(1/2)的H(t)向H(t )类似于t(1/3),其中H(t)是毛细管高度。 50-75 pm粉末样品表现出最佳的毛细管性能,这可能是由于毛细管压力和渗透性之间的良好平衡所致。通过池沸腾试验进一步表征了增强型灯芯的两相传热性能,结果表明,50-75μm的样品也使传热系数最大化,并且可能是PIMN的最佳结构设计。与其他增强芯的比较研究证明,PIMN具有极好的毛细管性能,使其成为两相设备增强芯的有前途的替代品。 (C)2016 Elsevier Ltd.保留所有权利。

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