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Microencapsulation of phase change materials with carbon nanotubes reinforced shell for enhancement of thermal conductivity

机译:具有碳纳米管的相变材料微胶囊加强壳,用于增强导热系数

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Novel microencapsulated phase change materials (micro-PCMs) were synthesized via in-situ polymerization with modified carbon nanotubes(CNTs) reinforced melamine-formaldehyde resin as shell material and CNTs reinforced n-octadecane as PCMs core. DSC results confirm that the micro-PCMs possess good phase change behavior and excellent thermal cycling stability. Melting enthalpy of the micro-PCMs can achieve 133.1 J/g and has slight changes after 20 times of thermal cyclings. And the incorporation of CNTs supplies the micro-PCMs with fast thermal response rate which increases the crystallization temperature of the micro-PCMs. Moreover, the thermal conductivity of the micro-PCMs has been significantly enhanced by introducing CNTs into their shell and core materials. And the thermal conductivity of micro-PCMs with 1.67 wt.% CNTs can increase by 25%. These results exhibit that the obtained micro-PCMs have a good prospect in thermal energy storage applications.
机译:通过原位聚合用改性碳纳米管(CNT)增强三聚氰胺 - 甲醛树脂作为壳材料和CNTS加强N-odandecane作为PCMS核心,通过原位聚合合成了新型微胶囊化相变材料(Micro-PCMS)。 DSC结果证实,微型PCM具有良好的相变行为和优异的热循环稳定性。微型PCM的熔化焓可以达到133.1J / g,并且在热循环的20次后略有变化。 CNT的掺入提供了具有快速热响应速率的微型PCM,其增加了微型PCM的结晶温度。此外,通过将CNT引入其壳体和芯材料,显着提高了微PCM的导热率。和1.67重量%的微型PCM的导热率。%CNT可增加25%。这些结果表明,所获得的微型PCM具有良好的热能储存应用前景。

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