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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Development of heat transfer enhancement of a novel composite phase change material with adjustable phase change temperature
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Development of heat transfer enhancement of a novel composite phase change material with adjustable phase change temperature

机译:具有可调相变温度的新型复合相变材料的传热增强

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摘要

Latent thermal energy storage plays an indispensable role in exhaust heat recycles in various industries which is useful for reducing energy consumption. Different phase change temperatures and high thermal conductivities of composite phase change materials were required for various domains. In the present work, Alum as phase change material and Ala as melting point modifier, a series of phase change materials with adjustable melting temperatures were prepared by physical mixing method. Moreover, EG as porous skeleton and thermal conductive enhancer, composite with high thermal conductivity was obtained with simple physical adsorption method. The XRD and SEM were applied to characterize the phase crystal and microstructure of the composite phase change material. DSC results revealed that phase change temperatures of Alum-Ala mixtures could be adjustable from 91.11 degrees C to 74.61 degrees C and thermal conductivity of the composite was improved to 10.93 W.m(-1).K-1, which is 21.9 times of pristine Alum-Ala mixture. The infrared thermography and temperature-time curves were obtained to represent the heat transfer performance and the subcooling degree intuitively. The subcooling degree was decreased from 2.238 K to 1.866 K. The result of TGA indicated that the composite possessed favorable thermal stability during the operating temperature. From the result, the composite obtained in the present work is a prospective candidate for exhaust heat recycles.
机译:潜热能存储在各种行业中的排气热回收中起不可或缺的作用,可用于减少能量消耗。各个结构域需要不同的相变温度和复合相变材料的高导热性。在本作工作中,ALUM作为相变材料和ALA作为熔点改性剂,通过物理混合方法制备了一系列具有可调节熔化温度的相变材料。此外,例如作为多孔骨架和导热增强剂,通过简单的物理吸附方法获得具有高导热率的复合材料。 XRD和SEM被应用于表征复合相变材料的相晶和微观结构。 DSC结果显示,Alum-Ala混合物的相变温度可从91.11℃调节至74.61℃,并且复合材料的导热率改善为10.93Wm(-1).k-1,即原始明矾的21.9倍。 -ala混合物。获得红外热成像和温度时间曲线,以直观地表示传热性能和过冷度。从2.238K降至1.866 K的过冷度降低。TGA的结果表明,在工作温度期间复合材料具有良好的热稳定性。从结果,本作中获得的复合材料是用于废热回收的前瞻性候选者。

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