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Preparation and thermal performance of n-octadecane/expanded graphite composite phase-change materials for thermal management

机译:N-十八烷基/膨胀石墨复合相变材料的制备及热性能进行热管理

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摘要

Series of n-octadecane/expanded graphite composite phase-change materials (PCMs) with different mass ratio were prepared using n-octadecane as PCMs, expanded graphite as multi-porous supporting matrix through vacuum impregnation method. Microstructure, crystallization properties, energy storage behavior, thermal cycling property and intelligent temperature-control performance of the composite PCMs were investigated. Results show that the composite PCMs have a good energy storage property. The melting enthalpy and crystallization enthalpy can reach 164.85 and 176.51 J g(-1), respectively. Furthermore, the good thermal conductivity of expanded graphite reduces the super-cooling degree of n-octadecane and endows the composite PCMs with fast thermal response rate and excellent thermal cycling stability. As a result, the phase-change temperatures and phase-change enthalpy almost have no change after 50 thermal-cooling cycles. The test of intelligent temperature-control performance shows that the electronic radiator filled with the composite PCMs possesses a high intelligent temperature-control performance, and its temperature can sustain in the range of 22-27.5 degrees C for about 6120 s. These results indicate that the prepared composite PCMs possess good comprehensive property and can be widely used in energy storage and thermal management systems.
机译:的正十八烷/膨胀石墨复合相变材料(PCMS)具有不同的质量比系列使用正十八烷作为相变材料,膨胀石墨制备通过真空浸渍方法多多孔支承基质。微观结构,结晶性能,能量存储行为,热循环性及复合PCM的智能温度控制性能进行了调查。结果表明,复合相变材料具有良好的能量储存性能。熔融焓和结晶焓可以达到164.85和176.51Ĵ克(-1),分别。此外,膨胀石墨的良好的热传导减少了正十八烷的过冷度,并赋予了快速热响应速率和优异的热循环稳定性的复合相变材料。其结果是,相变温度和相变焓几乎有50热 - 冷却循环后没有变化。的智能温度控制性能表明,该电子散热器填充有复合的PCM测试具有高智能温度控制的性能,其温度可在22-27.5℃的范围内维持约6120秒。这些结果表明,所制备的复合相变材料具有良好的综合性能,可广泛应用于能源存储和热管理系统。

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