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大功率LED新型相变热沉传热性能测试

机译:大功率LED新型相变热沉传热性能测试

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In view of the limitations of solid metal heat sink in the heat dissipation of high power light emitting diode (LED), a kind of miniaturized phase change heat sink is developed for high power LED packaging. First, the fabrication process of miniaturized phase change heat sink is investigated, upon which all parts of the heat sink are fabricated including main-body and end-cover of the heat sink, the formation of three-dimensional boiling structures at the evaporation end, the sintering of the wick, and the encapsulation of high power LED phase change heat sink. Subsequently, with the assistance of the developed testing system, heat transfer performance of the heat sink is tested under the condition of natural convection, upon which the influence of thermal load and working medium on the heat transfer performance is investigated. Finally, the heat transfer performance of the developed miniaturized phase change heat sink is compared with that of metal solid heat sink. Results show that the developed miniaturized phase change heat sink presents much better heat transfer performance over traditional metal solid heat sink, and is suitable for the packaging of high power LED.%针对现有固态金属热沉在大功率LED散热方面的局限性,设计并制造了一款微型相变热沉.首先,研究了该微型相变热沉的加工工艺,包括热沉本体和端盖的加工、蒸发端面三维沸腾结构成形、吸液芯烧结以及相变热沉的封装.然后,基于开发的测试系统,对相变热沉在自然对流环境下进行传热性能测试,研究了热载荷和工质对传热性能的影响.最后,将该相变热沉的传热性能与固态金属热沉进行比较.研究结果表明,该相变热沉具有很好的传热性能,且适用于大功率LED的封装.
机译:鉴于固体金属散热器在高功率发光二极管(LED)的散热中的局限性,开发了一种用于高功率LED封装的小型化相变散热器。首先,研究了小型化相变散热器的制造过程,散热器的所有部件包括散热器的主体和端盖,在蒸发端形成三维沸腾结构,芯片的烧结,以及高功率LED相变散热器的封装。随后,在开发的测试系统的帮助下,在自然对流的条件下测试散热器的传热性能,研究热负荷和工作介质对传热性能的影响。最后,将开发的小型化相变散热器的传热性能与金属固体散热器的散热器进行比较。结果表明,发达的小型化相变散热器在传统的金属固体散热器上提供了更好的传热性能,适用于高功率LED的包装。%针对别无,在大功率led散热方向的电汇性,设计设计并并制造款款微型相变相变相变首先首先相变相变该相变的的加工工程,包括热沉本体和端盖的加工,蒸包括三维沸腾成形,吸液吸液以及相相变的包装。然后,基因开发的测试系统,对相变热沉在自我对流环境下游传热性能性能,最后了热载荷和工人对传热的影响。最后,将该相变热沉的传热性能与固态金属热沉进行比较。结果结果明,该该变热沉具体,很相相性能,且且用于大厦LED的包装。

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