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Copper foam/PCMs based heat sinks: An experimental study for electronic cooling systems

机译:基于泡沫铜/ PCM的散热器:电子冷却系统的实验研究

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Copper foam (with porosity 97% and pore density 35 pores per inch) based heat sink without phase change material (PCM) and copper foam/PCM composites heat sinks are investigated to observe the behavior of operational time of heat sinks with respect to specific temperature both for charging and discharging. Paraffin wax, RT-35HC, RT-44HC and RT-54HC are used as PCM. Investigations are performed at heat flux of 0.8-2.4 KW/m(2) with a gap of 0.4 KW/m(2) uniformly distributed. PCM volume fractions of 0.68 and 0.83 are used in composites. Results indicated that at the end of 90 min charging, maximum temperature reduction of 25% is noted for RT-35HC/Copper foam at 0.8 KW/m(2) for PCM volume fraction 0.83. Afterwards, RT-44HC/Copper foam reveals maximum temperature reduction of 24% for 1.6 KW/m(2). RT35HC/Copper foam is least efficient at 2.4 KW/m(2) which reduces the base temperature only by 5-7%. Maximum enhancement ratio in operation time is noticed as 8 and 7.7 for RT-35HC/Copper foam and RT-44HC/Copper foam respectively at set point temperature (SPT) of 40 degrees C and 60 degrees C for respective composites. (C) 2018 Elsevier Ltd. All rights reserved.
机译:研究了无相变材料(PCM)的基于泡沫铜(孔隙率为97%,孔密度为35英寸/英寸)和铜泡沫/ PCM复合材料散热器,以观察散热器的工作时间相对于特定温度的行为既可充放电。石蜡,RT-35HC,RT-44HC和RT-54HC用作PCM。研究在0.8-2.4 KW / m(2)的热通量和0.4 KW / m(2)的间隙均匀分布的情况下进行。复合材料中使用的PCM体积分数为0.68和0.83。结果表明,在充电90分钟后,对于PCM体积分数0.83,RT-35HC /铜泡沫在0.8 KW / m(2)时最大降温幅度为25%。之后,RT-44HC /铜泡沫显示出最大的温度降低,功率为1.6 KW / m(24)为24%。 RT35HC /铜泡沫在2.4 KW / m(2)时效率最低,只能将基础温度降低5-7%。对于各自的复合材料,在设定温度(SPT)为40摄氏度和60摄氏度时,RT-35HC /铜泡沫和RT-44HC /铜泡沫的运行时间最大增强比分别为8和7.7。 (C)2018 Elsevier Ltd.保留所有权利。

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