首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Study of copper chemical-plating modified polyacrylonitrile-based carbon fiber wick applied to compact loop heat pipe
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Study of copper chemical-plating modified polyacrylonitrile-based carbon fiber wick applied to compact loop heat pipe

机译:铜化学镀层改性聚丙烯腈基碳纤维芯的研究施加到紧凑环热管

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摘要

This paper reports on the working characteristics of a flat plate loop heat pipe (LHP) with a thin polyacrylonitrile-based carbon fiber felt as a porous medium structure. To improve the hydrophilic properties of carbon fiber, a chemical-plating process is used to coat the carbon fiber surface with copper. The surface characteristics and pumping characteristics of modified capillary wicks are characterized using an electron microscope, scanning electron microscope, infrared radiation camera, and high-speed photography. The results show that the flat plate LHP with the modified thin carbon fiber felt as the capillary wick can start successfully and maintain stable operation in the range of 15-75W (heat flux of 12 W/cm(2)). The total thermal resistance varies from 1.1 to 0.45 degrees C/W at heat loads ranging from 15 to 75W. As a flexible and soft material, carbon fiber has the advantages of good matching with the evaporator, and resistance to mechanical damage. After it is modified by copper plating on its surface, it becomes a kind of hydrophilic material with an excellent capillary force. Furthermore, the copper plating layer increases the surface thermal conductivity and is beneficial to the uniform heating of the working fluid in the evaporating chamber. The fabrication of carbon fiber capillary wick is not limited to its volume.
机译:本文报道了平板环热管(LHP)的工作特性,其具有薄的聚丙烯腈基碳纤维作为多孔介质结构。为了改善碳纤维的亲水性,化学镀过程用于用铜涂覆碳纤维表面。改性毛细管的表面特性和泵送特性使用电子显微镜,扫描电子显微镜,红外辐射相机和高速摄影的特征。结果表明,随着毛细管的毛细管毡的平板LHP含有毛细管的毛毡,可以成功开始,保持稳定的操作,在15-75W的范围内(12W / cm(2)的热通量)。在15至75W的热负荷下,总热阻在1.1至0.45摄氏度范围内变化。作为一种柔性且柔软的材料,碳纤维具有良好匹配的蒸发器的优点,以及对机械损坏的抵抗力。在其表面上通过铜电镀修饰之后,它成为一种具有优异毛细力的亲水材料。此外,铜电镀层增加了表面导热率并且有利于蒸发室中的工作流体的均匀加热。碳纤维毛细管的制造不限于其体积。

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