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Thermal constant analysis of phase change nanocomposites and discussion on selection strategies with respect to economic constraints

机译:相变纳米复合材料的热常数分析及对经济限制的选择策略探讨

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This paper reports an experimental investigation focused on nano-enhanced phase change materials (NEPCM). Two different types of phase change materials (RT28 HC and RT26) with relatively low thermal conductivity and reasonable volumetric specific heat capacity were utilized as the base for NEPCMs with four types of nanoparticles (CuO, ZnO, Ag, and graphene). The novel four-phase preparation procedure was thoroughly presented together with a description of the measurement technology which was used for the examination of NEPCM thermal constants. The experimental results revealed that in most cases the thermal constants of samples were improved, such as thermal conductivity and volumetric specific heat capacity in a range of about 4% to 21% and 5% to 33%, respectively. In some cases, significant degradation of certain thermal constants was detected, such as in the case of the Graphene/RT26 nanocomposite. The possible nanomaterial selection strategies also discussed taking into account the economic aspects and experimental results related to the thermal constants. The results revealed that the selection of nanomaterials should be carefully considered with respect to the specific application since it is possible to manipulate the thermo-physical properties of the NEPCM as a unique combination of nanomaterial and PCM.
机译:本文报告了一种专注于纳米增强相变材料(Nepcm)的实验研究。使用具有相对低的导热率和合理的体积比热容量的两种不同类型的相变材料(RT28HC和RT26)用作具有四种类型的纳米颗粒(CuO,ZnO,Ag和石墨烯)的Nepcms的基础。新型四相制备程序与用于检查Nepcm热常数检查的测量技术的描述一起彻底呈现。实验结果表明,在大多数情况下,在大多数情况下,样品的热常数分别得到改善,例如导热率和体积特异性的热容量,其范围为约4%至21%和5%至33%。在一些情况下,检测到某些热常数的显着降解,例如在石墨烯/ RT26纳米复合材料的情况下。也考虑到与热常数相关的经济方面和实验结果,也讨论了可能的纳米材料选择策略。结果表明,应仔细考虑纳米材料的选择,因为可以操纵NEPCM作为纳米材料和PCM的独特组合的热物理性质。

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