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Heat transfer measurement of the cylindrical heat sink with sintered-metal-bead-layers fins and a built-in motor fan

机译:带烧结金属珠层散热片和内置电机风扇的圆柱形散热器的传热测量

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This work sintered 0.5-0.85 mm-diameter copper beads smoothly with the radial plate fins of the copper heat sink by thin layers at high temperature to form a LED cooling device with sintered-metal-bead-layer fins. A motor fan could be installed or un-installed into the heat sink, which would result in the mixed convection heat transfer or the pure free convection heat transfer conditions, respectively. This work also experimentally investigated the effect of the sintered-metal-bead layers on the total heat transfer under the above-mentioned two heat transfer conditions. The experimental groups were the plate-shape sintered-metal-bead (Model B) and strip-shape sintered-metal-bead heat sinks (Model C). The pure copper finned heat sink (Model A) was set as the control group. The results demonstrated that the thermal resistances of the Model B and Model C were separately 29% and 16% higher than that of the Model A at the temperature difference between the heated surface and the ambient (AT 30 ℃) and the pure free convection heat transfer condition (i.e. the heat sink without motor fan). It reveals that the present sintered-metal-bead layers cannot strengthen the free convection heat transfer. However, by comparing with the heat sinks without motor fan, the Model A, Model B and Model C built-in a motor fan had lower thermal resistances reduced separately by about 58%, 78% and 50%. It validates the effect of the built-in motor fan on the heat transfer enhancement, especially for the Model B with the plate-shape sintered-metal-bead layers. The thermal resistance of Model B was 31% lower than that of Model A at the mixed convection heat transfer condition (i.e. the heat sink with a motor fan).
机译:这项工作是在高温下通过薄层将直径0.5-0.85毫米的铜珠与铜散热器的径向板状鳍片平滑地烧结在一起,从而形成具有烧结金属珠层鳍片的LED冷却装置。可以在散热器中安装或卸下电动机风扇,这将分别导致混合对流传热或纯自由对流传热条件。这项工作还通过实验研究了在上述两种传热条件下,烧结金属珠层对总传热的影响。实验组为板状烧结金属珠(B型)和条状烧结金属珠(C型)散热器。将纯铜翅片散热器(A型)作为对照组。结果表明,在受热面与环境温度(AT 30℃)和纯自由对流热之间,模型B和模型C的热阻分别比模型A高29%和16%。转移条件(即没有电动机风扇的散热器)。结果表明,现有的烧结金属珠层不能增强自由对流换热。但是,与没有电动机风扇的散热器相比,内置电动机风扇的A型,B型和C型分别具有较低的热阻,分别降低了约58%,78%和50%。它验证了内置风扇对传热效果的影响,特别是对于带有板状烧结金属珠层的B型而言。在混合对流传热条件下(即带有电动机风扇的散热器),B型的热阻比A型低31%。

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