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A novel vapor chamber and its performance

机译:新型蒸气室及其性能

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The performance of a novel vapor chamber is tested in this study. In this vapor chamber, parallel grooves are made on the inner surface of the top plate, with inter-groove openings, to replace the conventional porous wick. To the inner surface of the bottom plate is sintered a layer of porous wick as the evaporator. The peaks of the groove walls directly contact with the wick so that the grooves function as vapor path, condenser and structural supporters simultaneously. The corrugated groove walls provide not only an enlarged condensation area, but also a direct shortcut for a portion of the liquid condensed on the groove surface to be absorbed back to the wick. Thus, smaller liquid-flow resistance and hence high anti-dryout capability are achieved. The test module includes a copper plate-fin heat sink in combination with a top fan. In this study, the evaporator wick was made of sintered multi-layer copper screens and the footprint of the vapor chamber was 10 cm × 8.9 cm. With a 2.1 cm × 2.1 cm or a 1.1 cm × 1.1 cm heating area, the vapor chamber resistances were measured for heat load increasing from 80 W to beyond 300 W. Good performances with low vapor chamber resistance and large heat load limit were obtained under different orientations. In addition, the individual evaporation resistances and condensation resistances were measured for representative conditions. The evaporation resistance was the dominating part of the vapor chamber resistance. Both the evaporation resistance and the condensation resistance decreased with increasing heat load, except that the evaporation resistance increased after the occurrence of partial dryout.
机译:在这项研究中测试了新型蒸气室的性能。在该蒸气室中,在顶板的内表面上形成有带有凹槽的开口的平行凹槽,以代替传统的多孔芯。在底板的内表面上烧结一层多孔芯,作为蒸发器。凹槽壁的峰直接与油芯接触,因此凹槽同时充当蒸气通道,冷凝器和结构支撑物。波纹状的槽壁不仅提供了增大的冷凝面积,而且还提供了直接的捷径,用于使在槽表面上冷凝的一部分液体被吸收回液芯。因此,获得较小的液体流动阻力并因此获得高的抗干燥能力。该测试模块包括一个铜翅片散热器和一个顶部风扇。在这项研究中,蒸发器芯是由多层烧结铜滤网制成的,蒸气室的占地面积为10 cm×8.9 cm。在加热面积为2.1 cm×2.1 cm或1.1 cm×1.1 cm的情况下,测量热负荷从80 W增加到超过300 W的蒸气室电阻。在较低的蒸气室电阻和较大的热负荷极限下获得了良好的性能不同的方向。另外,针对代表性条件,测量了各自的耐蒸发性和耐冷凝性。蒸发阻力是蒸气室阻力的主要部分。耐蒸发性和耐冷凝性均随着热负荷的增加而降低,只是在部分变干后耐蒸发性增加。

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