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Fabrication and performance evaluation of flexible flat heat pipes for the thermal control of deployable structure

机译:用于可展开结构热控制的柔性扁平热管的制造和性能评估

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摘要

In this work, we report the fabrication and thermal performance evaluation of flexible flat heat pipes by using laser ablated casing material with aluminum compound packing film and using gradient wetting functional copper meshes covered with nanowires as the wick structure. Deionized water was chosen as working fluid and three different filling ratios (20%, 30%, 40%) of working fluid were loaded into the heat pipe to investigate its impact on thermal performance. The fabricated flexible flat heat pipes can be bended from 0 degrees to 180 degrees in the horizontal operation mode and demonstrated consistently low thermal resistance of 0.525 degrees C/W or effective thermal conductivity of 1499 W/m . K after repeated bending. Simultaneously, theoretical analysis reveals that bending disturbs the vapor flow from evaporator to condenser in the flexible flat heat pipe, which leads to increased liquid-vapor interfacial thermal resistance in the evaporation section. The purpose of this study is to apply the flexible flat heat pipe to thermal control of deployable structures. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在这项工作中,我们报告了柔性扁平热管的制造和热性能评估,方法是使用带有铝化合物填料薄膜的激光烧蚀外壳材料,并使用覆盖纳米线的梯度润湿功能性铜网作为灯芯结构。选择去离子水作为工作流体,并将三种不同填充率(20%,30%,40%)的工作流体装入热管中,以研究其对热性能的影响。所制造的挠性扁平热管在水平操作模式下可以从0度弯曲到180度,并表现出始终如一的0.525摄氏度/瓦的低热阻或1499瓦/米的有效热导率。反复弯曲后的K。同时,理论分析表明,弯曲会扰乱柔性扁平热管中从蒸发器流向冷凝器的蒸汽流,从而导致蒸发部分的液汽界面热阻增加。这项研究的目的是将柔性扁平热管应用于可展开结构的热控制。 (C)2019 Elsevier Ltd.保留所有权利。

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