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首页> 外文期刊>Journal of Electronic Packaging >Investigation of Microporous Coatings and Mesoscale Evaporator Enhancements for Two-Phase Cooling of Electronic Components
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Investigation of Microporous Coatings and Mesoscale Evaporator Enhancements for Two-Phase Cooling of Electronic Components

机译:电子零件两相冷却的微孔涂层和中尺度蒸发器的研究

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An empirical study of pool nucleate boiling enhanced with a microporous coating was conducted within the context of microprocessor cooling. A thermal test vehicle (TTV) emulated the heat load from a general purpose microprocessor and delivered a moderately nonuniform heat flux density distribution at the boiling surface that would be typical of mainstream microprocessors. The TTV was affixed to a copper test coupon that formed the bottom surface of a sealed boiling chamber containing FC-72 at atmospheric pressure. A design of experiments was conducted on multiple test coupons to identify how the microporous coating, the base thickness of the coupon, and the height of small pin fins affect the combined conduction and boiling heat transfer from the test coupon. The data revealed that the presence of the microporous coating was the most significant factor of the three tested and indicates that the presence of fins as short as 0.5 mm may play a role in reducing hysteresis in the boiling curve.
机译:在微处理器冷却的背景下,进行了用微孔涂层增强池核沸腾的实验研究。热测试车(TTV)模拟了通用微处理器的热负荷,并在沸腾表面上传递了中等程度的不均匀热通量密度分布,这是主流微处理器所特有的。将TTV固定在铜测试试样上,该试样在大气压下形成包含FC-72的密封沸腾室的底面。对多个测试样板进行了实验设计,以识别微孔涂层,样板的基础厚度以及小针状鳍片的高度如何影响测试样板的传导和沸腾传热。数据表明,微孔涂层的存在是所测试的三个中最重要的因素,并且表明短至0.5 mm的散热片的存在可能在降低沸腾曲线的滞后方面起着作用。

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