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Thermal conductivity enhancement of polyethylene glycol/expanded vermiculite shape-stabilized composite phase change materials with silver nanowire for thermal energy storage

机译:银纳米线提高聚乙二醇/膨胀ver石形状稳定复合相变材料的导热系数

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A series of novel polyethylene glycol-silver nanowire/expanded vermiculite shape-stabilized composite phase change materials (PEG-Ag/EVM ss-CPCMs) were prepared by physical blending and impregnation method to overcome liquid leakage during phase transition and enhance the thermal conductivity of PEG. In these PEG-Ag/EVM ss-CPCMs, PEG served as the phase change material for thermal energy storage; Ag NW served as thermal conductivity enhancement filler; EVM acted as the supporting material to provide structural strength and prevent the leakage of melted PEG. SEM analysis results indicated that Ag NW wrapped with PEG was well dispersed and enwrapped inside the pores and surfaces of EVM due to capillary force and surface tension. It was found that the maximum encapsulation capacity of PEG in all PEG-Ag/EVM ss-CPCMs with good shape stability was 66.1 wt.%. The thermal conductivity of PEG-Ag/EVM ss-CPCMs could be greatly enhanced by the prepared Ag NW with a length of 5-20 mu m and a diameter of 50-100 nm. A theoretical calculation method was developed to predict and evaluate the thermal conductivity enhancement ability of Ag NW. The predictions were consistent with experimental results. The thermal conductivity of PEG-Ag/EVM ss-CPCM19.3 reached 0.68 W/m K, which was 11.3 times higher than that of pure PEG, and corresponding phase change latent heat was 96.4 J/g. The supercooling extent of PEG in PEG-Ag/EVM ss-CPCMs decreased approximate 7 degrees C because the EVM could act as a heterogeneous nucleation center to promote the crystallization of PEG. FT-IR and TGA results showed that the PEG-Ag/EVM ss-CPCMs exhibited excellent chemical compatibility and thermal stability. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过物理共混和浸渍法制备了一系列新型的聚乙二醇银纳米线/膨胀ver石形状稳定复合相变材料(PEG-Ag / EVM ss-CPCMs),克服了相变过程中的液体渗漏,提高了材料的导热性。聚乙二醇。在这些PEG-Ag / EVM ss-CPCM中,PEG用作热能存储的相变材料。 Ag NW用作导热性增强填料; EVM充当支撑材料以提供结构强度并防止熔融PEG泄漏。 SEM分析结果表明,由于毛细管力和表面张力,包裹有PEG的Ag NW被很好地分散和包裹在EVM的孔和表面内。发现在具有良好形状稳定性的所有PEG-Ag / EVM ss-CPCM中,PEG的最大包封能力为66.1重量%。制备的Ag NW的长度为5-20μm,直径为50-100 nm,可以大大提高PEG-Ag / EVM ss-CPCMs的热导率。开发了一种理论计算方法来预测和评估Ag NW的导热系数。该预测与实验结果一致。 PEG-Ag / EVM ss-CPCM19.3的热导率达到0.68 W / m K,是纯PEG的11.3倍,相应的相变潜热为96.4 J / g。 PEG在PEG-Ag / EVM ss-CPCMs中的过冷程度降低了约7摄氏度,因为EVM可以充当异质成核中心来促进PEG的结晶。 FT-IR和TGA结果表明PEG-Ag / EVM ss-CPCMs具有优异的化学相容性和热稳定性。 (C)2016 Elsevier B.V.保留所有权利。

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