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Experimental studies on the supercooling and melting/freezing characteristics of nano-copper/sodium acetate trihydrate composite phase change materials

机译:纳米铜/醋酸钠三水合物复合相变材料的过冷熔融特性试验研究

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This paper reports that Nano-copper (Nano-Cu), which possesses high thermal and electrical conductivity, as an additive, can improve the supercooling properties of sodium acetate trihydrate (CH3COO-Na center dot 3H(2)O, SAT) and enhance its thermal conductivity. To investigate the effect of Nano-Cu content on the degree of supercooling of SAT, composite phase change materials containing SAT, Nano-Cu (0.4%, 0.5%, 0.6%, 0.7% and 0.8%), CMC (thickening agent) and sodium dodecyl sulfonate (C12H25NaO3S, dispersant) were prepared. Melting-freezing experiments involving the composite materials indicated that the rate of heat transfer increased by nearly 20%. When an optimal amount of Nano-Cu (i.e., 0.5%) was added to SAT, the degree of supercooling was reduced to approximately 0.5 degrees C. Compared to the use of inorganic salt hydrates as nucleating agents, Nano-Cu is significantly advantageous in reducing the degree of supercooling of SAT. The maximum improvement in supercooling was observed when the melting freezing experiment was conducted at an initial temperature of 70 degrees C. The thermal conductivity of the reported composite phasechange materialsis approximately 20% higher than that of pure SAT. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文报道了具有高导热性和导电性的纳米铜(Nano-Cu)可以改善三水合乙酸钠(CH3COO-Na中心点3H(2)O,SAT)的过冷性能并增强它的导热性。研究纳米铜含量对SAT过冷度,含SAT的复合相变材料,纳米铜(0.4%,0.5%,0.6%,0.7%和0.8%),CMC(增稠剂)和制备十二烷基磺酸钠(C12H25NaO3S,分散剂)。涉及复合材料的熔融冷冻实验表明,传热率提高了近20%。当将最适量的纳米铜(即0.5%)添加到SAT中时,过冷度降低到大约0.5摄氏度。与使用无机盐水合物作为成核剂相比,纳米铜在以下方面具有明显优势:降低SAT的过冷度。当在70摄氏度的初始温度下进行熔融冷冻实验时,观察到过冷度的最大改善。报道的复合相变材料的导热系数比纯SAT的导热系数高约20%。 (C)2016 Elsevier Ltd.保留所有权利。

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