An investigation of porous structure characteristics of heat pipes made by additive manufacturing

D. Jafari, W. Wits, B. Geurts
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引用次数: 14

Abstract

Specific properties of porous media such as thermal conductivity and wicking of liquid into the porous structure are of great importance to many applications. Typically, such porous structures are found in two-phase devices, such as heat pipes (HPs). In this study, we have experimentally analysed the effective thermal conductivity and the wicking of different liquids into a stainless steel 316L porous structure fabricated through selective laser melting (SLM) technology. The sample was rectangular shaped with a porosity of 46.5% and outer dimensions of 20×40×1 mm3. An experimental apparatus and related procedures for the determination of the effective thermal conductivity of the porous structure saturated with distilled water and Ethylene glycol are discussed. The experimentally measured values of effective thermal conductivity are compared with correlations available in the literature. The standard Washburn wicking model is taken into account for the analysis. We describe the application of the Washburn equation to measure the contact angle of a printed porous sample with three test liquids; n-Hexane, water and Ethylene glycol are used to measure contact angles. The experimental results verify that SLM technology can be used to fabricate porous structures for HP technology. The results show an effective thermal conductivity in the range of 1.8–6.0 W/mK for different working fluids.
增材制造热管多孔结构特性研究
多孔介质的特殊性质,如导热性和液体进入多孔结构的吸干性,在许多应用中都是非常重要的。通常,这种多孔结构存在于两相器件中,如热管(hp)。在本研究中,我们通过实验分析了通过选择性激光熔化(SLM)技术制备的316L不锈钢多孔结构的有效导热性和不同液体的吸干性。样品呈矩形,孔隙率为46.5%,外尺寸为20×40×1 mm3。讨论了一种测定蒸馏水和乙二醇饱和多孔结构有效导热系数的实验装置和相关方法。有效导热系数的实验测量值与文献中可用的相关性进行了比较。在分析中考虑了标准的Washburn排芯模型。我们描述了Washburn方程在三种测试液体中测量印刷多孔样品接触角的应用;正己烷、水和乙二醇被用来测量接触角。实验结果验证了SLM技术可用于制备HP技术所需的多孔结构。结果表明,不同工质的有效导热系数在1.8 ~ 6.0 W/mK之间。
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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