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An experimental study on the heat dissipation of LED lighting module using metal/carbon foam

机译:金属/碳泡沫对LED照明模块散热的实验研究

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摘要

In this study, thermal performance of the cooling modules applicable for Par 38 light bulb is investigated. A total of six heat sink modules, including the basic reference design, metal foam, and carbon foam are tested and compared. Tests are performed and analyzed using the transient test method based on JESD51-1 standard. It is found that the thermal resistance from junction to die attach is quite small. By contrast, the thermal resistance of the heat sink dominates the total resistance, and it comprises 55% of the total resistance for the standard heat sink module. With some slight opening on the base plate, the thermal resistance can be improved by approximately 12%. The thermal resistance for the carbon foam having an embedded metal plate shows the least thermal resistance of 1.14 K/W, followed by the carbon foam, and then the metal foam. The lower thermal resistance of carbon foam in association with copper metal foam is due to its higher emissivity. In addition to better heat transfer performance as compared to the standard plate heat sink, the utilization of carbon foam and metal foam can also significantly reduce the weight of the heat sink. In this study, the weight of the heat sink can be reduced as much as 33%.
机译:在这项研究中,研究了适用于Par 38灯泡的冷却模块的热性能。总共测试并比较了六个散热器模块,包括基本参考设计,金属泡沫和碳泡沫。使用基于JESD51-1标准的瞬态测试方法进行测试并进行分析。发现从结到芯片附着的热阻非常小。相比之下,散热器的热阻在总电阻中占主导地位,占标准散热器模块总电阻的55%。在底板上有一些轻微的开口,热阻可以提高大约12%。具有嵌入的金属板的碳泡沫的热阻显示出最小的1.14K / W的热阻,其次是碳泡沫,然后是金属泡沫。碳泡沫与铜金属泡沫的热阻较低是由于其较高的发射率。与标准板式散热器相比,除了具有更好的传热性能外,碳泡沫和金属泡沫的利用还可以显着降低散热器的重量。在这项研究中,散热器的重量可以减少多达33%。

著录项

  • 来源
    《Letters in heat and mass transfer》 |2013年第11期|73-79|共7页
  • 作者单位

    Green Energy & Environment Research Laboratories, Industrial Technology Research Institute, Hsinchu 310, Taiwan;

    National Chung Hsing University, Department of Mechanical Engineering Taichung 402, Taiwan;

    National Chung Hsing University, Department of Mechanical Engineering Taichung 402, Taiwan;

    Green Energy & Environment Research Laboratories, Industrial Technology Research Institute, Hsinchu 310, Taiwan;

    Material & Chemical Research Laboratories, Industrial Technology Research Institute, Hsinchu 310, Taiwan;

    Department of Mechanical Engineering, National Chiao Tung University, Hsinchu 300, Taiwan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    LED; Metal foam; Carbon foam; Natural convection;

    机译:发光二极管;金属泡沫;碳泡沫;自然对流;

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