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Combined effect of bending and flattening on heat transfer performance of cryogenic sintered-wick heat pipe

机译:弯曲与平坦化对低温烧结芯热管传热性能的综合作用

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Heat transfer characteristics of a cryogenic sintered-wick miniature bent and flattened heat pipe has been experimentally investigated in this paper. The heat pipes are made of oxygen free copper for the container and nitrogen is used as the working fluid. The wick was composite wick made from sintered copper powder and grooved copper pipe. The original cylindrical copper heat pipe was 6 mm in outer diameter and 200 mm in length. The heat pipes with the bending radius of 21 mm and the bending angle of 0 degrees, 30 degrees, 60 degrees and 90 degrees and the final thickness of 2.5, 3.0, 4.0 mm were constructed and tested. The operating temperature of heat pipe was at approximately 78.25 +/- 0.10 K. It was found that the performance of the heat pipe in terms of thermal resistances depends on both bending angle and final thickness. Both bending and flattening affect the thermal resistance by increasing it. The bending increased the thermal resistance from 0.88 to 1.07 K/W (6 nun, 0 degrees to 6 mm, 90 degrees) and the flattening increased the thermal resistance from 0.88 to 2.24 K/W (6mm, 0 degrees to 2.5 mm, 0 degrees). And the combined effect of bending and flattening increased the thermal resistance from 0.88 to 1.56 K/W (6 mm, 0 degrees to 3 mm, 90 degrees). The bending affects heat pipe by wick deformation that obstructs liquid flow. The flattening affects the thermal resistance by the collapse of wick structure which causes a broken liquid path of returned working fluid from the condenser to the evaporator and by liquid clogging in the condenser.
机译:本文实验研究了低温烧结芯微型弯曲和扁平热管的传热特性。热管由用于容器的无氧铜制成,并且使用氮作为工作流体。灯芯是由烧结铜粉和沟槽铜管制成的复合芯。原始圆柱形铜热管在外径为6mm,长度为200mm。弯曲半径为21mm的热管,弯曲角为0度,30度,60度和90度,最终厚度为2.5,3.0,40mm。热管的工作温度约为78.25 +/- 0.10K。发现热管在热电阻方面的性能取决于弯曲角度和最终厚度。弯曲和平坦化均通过增加其影响热阻。弯曲增加了从0.88到1.07 k / w(6 nun,0度至6mm,90度)的热阻增加了热阻从0.88至2.24 k / w(6mm,0度至2.5 mm,0程度)。弯曲和平坦化的综合效果增加了0.88至1.56 k / w(6mm,0度至3mm,90度)的热阻增加了热阻。弯曲通过芯片变形影响热管,阻碍液体流动。扁平化通过芯骨结构的崩溃影响了热阻,这导致从冷凝器到蒸发器的返回工作流体的破碎液体路径,并通过冷凝器中的液体堵塞。

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