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Experimental Research on the Thermal Performance and Semi-Visualization of Rectangular Flat Micro-Grooved Gravity Heat Pipes

机译:矩形扁平微沟重力热管热性能和半可视化的实验研究

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摘要

To strengthen the heat dissipating capacity of a heat pipe used for integrated insulated gate bipolar transistors, as an extension of our earlier work, the effect of micro-groove dimension on the thermal performance of flat micro-grooved gravity heat pipe was studied. Nine pipes with different depths (0.4 mm, 0.8 mm, 1.2 mm) and widths (0.4 mm, 0.8 mm, 1.2 mm) were fabricated and tested under a heating load range from 80 W to 180 W. The start-up time, temperature difference, relative thermal resistance and equivalent thermal conductivity were presented as performance indicators by comparison of flat gravity heat pipes with and without micro-grooves. Results reveal that the highest equivalent thermal conductivity of the flat micro-grooved gravity heat pipes is 2.55 times as that of the flat gravity heat pipe without micro-grooves. The flat gravity heat pipes with deeper and narrower micro-grooves show better thermal performance and the optimal rectangular micro-groove dimension among the selected options is determined to be 1.2 mm (depth) × 0.4 mm (width). Furthermore, the liquid–vapor phase behaviors were observed to verify the heat transfer effects and analyze the heat transfer mechanism of the flat micro-grooved heat pipes.
机译:为了加强用于集成绝缘栅双极晶体管的热管的散热能力,作为我们之前工作的延伸,研究了微槽尺寸对扁平微沟重力热管的热性能的影响。在加热载荷范围内制造和宽度(0.4mm,0.8mm,1.2 mm)和宽度(0.4mm,0.8mm,1.2mm)的九管,并在80W至180W中进行测试。启动时间,温度通过使用微槽的扁平重力热管比较差异,相对热阻和等效导热率作为性能指示剂。结果表明,扁平的微沟重力热管的最高等效导热率为2.55倍,因为没有微槽的扁平重力热管。具有更深和更窄的微槽的扁平重力热管显示出更好的热性能,并且所选选项中的最佳矩形微槽尺寸确定为1.2 mm(深度)×0.4mm(宽度)。此外,观察到液相 - 气相行为以验证传热效果并分析扁平微沟热管的传热机制。

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