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Effect of pore structure on heat transfer performance of lotus-type porous copper heat sink

机译:孔结构对莲花型多孔铜散热片传热性能的影响

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摘要

A special kind of microchannel heat sink is fabricated by a lotus-type porous copper in which long cylindrical pores are arranged in one direction. By applying the straight fin model to the lotus-type porous copper, the effect of the pore structure including porosity, pore diameter and open porosity on its heat transfer performance can be predicted. Given an available pump pressure, the structural parameter window of lotus-type porous copper which meets the heat dissipation requirement can be given. By improving the process control pore structure can be optimized and 80% pores in optimized lotus-type porous copper samples are open when the sample length along the pore growth direction is 16 mm. The heat transfer performance of optimized lotus-type porous copper heat sinks was tested. At a pressure drop of 100 kPa, a heat transfer coefficient of 7.86 (W/cm(2) K) could be achieved. (C) 2019 Elsevier Ltd. All rights reserved.
机译:一种特殊的微通道散热器是由一种莲花形多孔铜制成的,该多孔铜在一个方向上排列有较长的圆柱孔。通过将直翅片模型应用于荷叶型多孔铜,可以预测包括孔隙率,孔径和开孔率在内的孔结构对其传热性能的影响。在给定可用泵压的情况下,可以给出满足散热要求的莲花型多孔铜的结构参数窗口。通过改进工艺控制,当沿孔生长方向的样品长度为16 mm时,可以优化孔结构并优化莲花型多孔铜样品中80%的孔。测试了优化的莲花型多孔铜散热器的传热性能。在100 kPa的压降下,可以实现7.86(W / cm(2)K)的传热系数。 (C)2019 Elsevier Ltd.保留所有权利。

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