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Comparison of Micro-Pin-Fin and Microchannel Heat Sinks Considering Thermal-Hydraulic Performance and Manufacturability

机译:考虑热液压性能和可制造性的微针鳍和微通道散热器的比较

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摘要

This paper explores the potential of micro-pin-fin heat sinks as an effective alternative to microchannel heat sinks for dissipating high heat fluxes from small areas. The overall goal is to compare microchannel and micro-pin-fin heat sinks based on three metrics: thermal performance, hydraulic performance, and cost of manufacturing. The channels and pins of the microchannel and micro-pin-fin heat sinks, respectively, have a width of 200 $mu {rm m}$ and a height of 670 $mu {rm m}$. A comparison of the thermal-hydraulic performance shows that the micro-pin-fin heat sink has a lower convection thermal resistance at liquid flow rates above approximately 60 g/min, though this is accompanied by a higher pressure drop. Methods that could feasibly fabricate the two heat sinks are reviewed, with references outlining current capabilities and limitations. A case study on micro-end-milling of the heat sinks is included. This paper includes equations that separate the fabrication cost into the independent variables that contribute to material cost, machining cost, and machining time. It is concluded that, with micro-end-milling, the machining time is the primary factor in determining cost, and, due to the additional machining time required, the micro-pin-fin heat sinks are roughly three times as expensive to make. It is also noted that improvements in the fabrication process, including spindle speed and tool coatings, will decrease the difference in cost.
机译:本文探讨了微针翅片散热器作为微通道散热器的有效替代品的潜力,该散热器可以消散小区域的高热通量。总体目标是根据三个指标来比较微通道和微针翅式散热器:热性能,液压性能和制造成本。微通道散热器和微引脚翅片散热器的通道和引脚的宽度分别为200 $ mu {rm m} $,高度为670 $ mu {rm m} $。热液压性能的比较表明,微针翅式散热器在液体流速高于约60 g / min时具有较低的对流热阻,尽管这伴随着较高的压降。回顾了可行地制造两个散热器的方法,并概述了当前的功能和局限性。包括散热片微端面铣削的案例研究。本文包括将制造成本分为独立变量的方程式,这些独立变量会影响材料成本,加工成本和加工时间。结论是,对于微型立铣刀来说,加工时间是决定成本的主要因素,并且由于需要额外的加工时间,因此微型针翅式散热器的制造成本大约是其三倍。还应注意的是,包括主轴转速和工具涂层在内的制造工艺的改进将减少成本差异。

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