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Fatty acid eutectic/polymethyl methacrylate composite as form-stable phase change material for thermal energy storage
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论文类型: 期刊论文
发表时间: 2010-08-01
发表刊物: APPLIED ENERGY
收录刊物: SCIE、EI、ESI高被引论文、Scopus
卷号: 87
期号: 8
页面范围: 2660-2665
ISSN号: 0306-2619
关键字: Form-stable phase change material; Fatty acid eutectic; Polymethyl methacrylate; Building energy conservation
摘要: This work is focused on the preparation and characterization of fatty acid eutectic/polymethyl methacrylate (PMMA) form-stable phase change material (PCM). Capric acid (CA), lauric acid (LA), myristic acid (MA) and stearic acid (SA) were selected to prepare binary fatty acid eutectic for the sake of decreasing the phase change temperature Using the method of self-polymerization, CA-LA, CA-MA, CA-SA and LAMA eutectics acting as the heat-absorbing materials and PMMA serving as the supporting material were compounded in the ratio of 50/50 wt %. The relations between mass fraction of LA-MA eutectic and latent heat and compressive strength of LA-MA/PMMA composite were discussed, and the feasible maximum mass fraction of LA-MA eutectic was determined to be 70%. CA-LA/PMMA, CA-MA/PMMA, CA-SA/PMMA and LA-MA/PMMA composites were examined to investigate their potential application in building energy conservation. Scanning electron microscope and polarizing optical microscope observations showed that fatty acid eutectic was coated by PMMA thus the composite remained solid when the sample was heated above the melted point of the fatty acid. Fourier-transform infrared results indicated that fatty acid and PMMA had no chemical reaction and exhibited good compatibility with each other. According to the differential scanning calorimetry results, phase change temperatures of CA-LA/PMMA, CA-MA/PMMA, CA-SA/PMMA and LA-MA/PMMA composites were 21.11 degrees C, 25 16 degrees C, 26 38 degrees C and 34.81 degrees C and their latent heat values were determined to be 76.3 kJ/kg, 69.32 kJ/kg, 59.29 kJ/kg and 80 75 kJ/kg, respectively Moreover, thermal stability and expansibility of the form-stable PCMs were characterized by thermogravimetric analysis and volume expansion coefficient respectively, and the results indicated that the composites were available for building energy conservation (C) 2010 Elsevier Ltd All rights reserved

王立久

教授   博士生导师   硕士生导师

任职 : 大连理工大学(土木水力学院) 建筑材料研究所 所长 大连理工大学建筑能源技术研究中心 主任 辽宁省复合材料学会常务副理事长兼秘书长 政协辽宁省委员会委员 “建筑技术与应用”“混凝土”和“国外连建材科技“等杂志编委

性别: 男

毕业院校:大连工学院

学位: 硕士

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学科:市政工程. 水工结构工程. 材料学

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