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Experimental study on the influence of preparation parameters on strengthening stability of phase change materials (PCMs)

机译:制备参数对相变材料(PCMs)强化稳定性影响的实验研究

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The preparation process of three common nanocomposite phase change materials (NCPCMs) was studied by using the single-factor test method, and the influences of drying treatment, additives, ultrasonic power and time, base liquid volume and particle concentration on the stability of NCPCMs were analyzed. The results are as follows: (1) Drying treatment had the most significant effect on the stability of ZnO NCPCMs. Additive treatment has the most significant effect on the stability of Al2O3, and the improvement degree is about 9 times of CuO and 2 times of ZnO. (2) The ultrasonic power treatment method has the most significant effect on the stability of Al2O3 NCPCMs. For the sample with the worst preparation effect, the relative absorbance of the uniformly dispersed Al2O3 NCPCMs increased by 20.30%. (3) The stability of ZnO NCPCMs was significantly affected by ultrasonic time treatment and base liquid volume. Under the two preparation conditions, the relative absorbance of the uniformly dispersed ZnO NCPCMs increased by 65.67% and 38.24%, respectively, relative to the worst-performing samples. (4) The particle concentration factor has the most significant effect on the stability of CuO NCPCMs. At the same time, the optimal preparation scheme of NCPCMs was obtained. (C) 2019 Elsevier Ltd. All rights reserved.
机译:采用单因素试验方法研究了三种常见的纳米复合相变材料的制备工艺,并考察了干燥处理,添加剂,超声功率和时间,基液体积和颗粒浓度对NCPCM稳定性的影响。分析。结果表明:(1)干燥处理对ZnO NCPCMs的稳定性影响最大。添加剂处理对Al2O3的稳定性影响最大,其改善程度约为CuO的9倍和ZnO的2倍。 (2)超声功率处理方法对Al2O3 NCPCM的稳定性影响最大。对于制备效果最差的样品,均匀分散的Al2O3 NCPCM的相对吸收增加了20.30%。 (3)ZnO NCPCMs的稳定性受到超声时间处理和基液体积的显着影响。在两种制备条件下,相对于性能最差的样品,均匀分散的ZnO NCPCM的相对吸收分别增加了65.67%和38.24%。 (4)颗粒浓度因子对CuO NCPCM的稳定性影响最大。同时获得了NCPCM的最佳制备方案。 (C)2019 Elsevier Ltd.保留所有权利。

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