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Experimental investigation of heat pipe thermal performance with microgrooves fabricated by wire electrical discharge machining

机译:电线电气放电加工制造的微型管热管热性能试验研究

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This work presents the use of electrical discharge machining (EDM) technology for manufacturing of three different types of axial microgrooves in heat pipes. This specific process, called wire electrical discharge machining (wire-EDM), allows the fabrication of microgrooves on the inner wall of a heat pipe with accuracy. Different from other capillary structures, such as composite wick and screen mesh, the material is removed from the pipe’s container in order to conceive the capillary structure, which contributes with the mass reduction of the passive two-phase heat transfer device. The heat pipes were manufactured from a straight copper pipe with the external diameter of 9.45 mm, the inner diameter of 6.20 mm, and a total length of 200 mm. Three types of axial microgrooves were manufactured for constant width (35 μm) and varying the depth (from 30-48 μm), and thickness (from 35-70 μm). The number of microgrooves was also varied from 21-32 microgrooves. Water was used as the working fluid and the loading filling ratio was 60% of the evaporator volume. The condenser was cooled by air forced convection, the adiabatic section was insulated and the evaporator was heated by an electrical resistor and it was insulated from the environment with aeronautic thermal insulation. The thermal performance of the heat pipes are analyzed based on experimental results, so the heat pipes were tested at the horizontal and different inclinations under different low heat loads (from 5-50 W or a heat flux from 0.21-2.10 W/cm2). The experimental results showed that the axial microgrooves manufactured by the wire-EDM process worked satisfactorily in all analyzed cases and microgrooves of Type 1 showed a better thermal performance when compared with the others.
机译:这项工作提出了使用电气放电加工(EDM)技术来制造热管中的三种不同类型的轴向微槽。这种称为线电放电加工(线EDM)的该具体方法允许以精度在热管的内壁上制造微型侵蚀。与其他毛细管结构不同,例如复合芯和筛网,这些材料被从管道的容器中取出以设想毛细结构,这有助于被动两相传热装置的质量降低。热管由外径为9.45毫米的直铜管制造,内径为6.20mm,总长度为200毫米。为恒定宽度(35μm)制造了三种类型的轴向微槽,并改变深度(30-48μm),厚度(35-70μm)。微血管的数量也是不同21-32微槽的变化。用作工作流体,加载填充比为蒸发器体积的60%。通过空气强制对流冷却冷凝器,绝缘截面被绝缘,蒸发器通过电阻器加热,并且与航空保温的环境绝缘。基于实验结果分析热管的热性能,因此在不同低热负荷(5-50W或0.21-2.10W / cm 2的热量)下在水平和不同倾斜处测试热管。实验结果表明,通过线EDM工艺制造的轴向微侵为在所有分析的病例中令人满意地工作,并且与其他情况相比,1型的微型腔体显示出更好的热性能。

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