复合相变蓄热材料研究进展

被引:82
作者
李贝
刘道平
杨亮
机构
[1] 上海理工大学能源与动力工程学院新能源科学与工程研究所
关键词
相变材料; 复合改性; 蓄热; 综述;
D O I
暂无
中图分类号
TB34 [功能材料];
学科分类号
080906 [电磁信息功能材料与结构];
摘要
相变材料是目前热门的功能材料,在储存和释放能量的过程中,温度保持不变或稳定在一定的温度区间内,使得相变材料不仅能实现热量储存且具有温度调控功能。复合相变材料由于具有多种单一材料的性质而成为研究热点,并广泛应用在建筑节能、电子器件热管理等方面。本文分类归纳了相变材料的特征,并根据化学成分不同将复合相变蓄热材料分为有机-有机、无机-无机和有机-无机三大类,结合研究现状分类梳理了不同类型复合相变蓄热材料的优缺点,并对其蓄热特性进行归纳对比。总结了复合相变蓄热材料的应用现状,结合能源应用现状和环境情况进一步分析了今后的研究和发展方向,认为未来的复合相变材料应该是高效蓄热、灵敏准确、价格低廉、环保可降解的新型复合相变材料。
引用
收藏
页码:36 / 43
页数:8
相关论文
共 29 条
[1]
铝基合金相变储热材料热物性及储热特性研究 [D]. 
邢丽婧 .
华北电力大学,
2015
[2]
Thermophysical property measurements and thermal energy storage capacity analysis of aluminum alloys.[J].Gaosheng Wei;Pingrui Huang;Chao Xu;Dongyu Liu;Xing Ju;Xiaoze Du;Lijing Xing;Yongping Yang.Solar Energy.2016,
[3]
Effect of porosity of conducting matrix on a phase change energy storage device.[J].Aditya Atal;Yuping Wang;Mayur Harsha;Subrata Sengupta.International Journal of Heat and Mass Transfer.2016,
[4]
Novel form stable phase change materials based on the composites of polyethylene glycol/polymeric solid-solid phase change material.[J].Changzhong Chen;Wenmin Liu;Zhiqiang Wang;Kelin Peng;Wanli Pan;Qian Xie.Solar Energy Materials and Solar Cells.2015,
[5]
Preparation and characterization of melamine/formaldehyde/polyethylene glycol crosslinking copolymers as solid–solid phase change materials.[J].Li Yanshan;Wang Shujun;Liu Hongyan;Meng Fanbin;Ma Huanqing;Zheng Wangang.Solar Energy Materials and Solar Cells.2014,
[6]
Preparation and analysis of composite phase change material used in asphalt mixture by sol–gel method.[J].Junping Ren;Biao Ma;Wei Si;Xueyan Zhou;Chao Li.Construction and Building Materials.2014,
[7]
Mass spectrometry identification of alkyl-substituted pyrazines produced by Pseudomonas spp. isolates obtained from wine corks.[J]..Food Chemistry.2012,
[8]
A review on phase change materials integrated in building walls.[J].Frédéric Kuznik;Damien David;Kevyn Johannes;Jean-Jacques Roux.Renewable and Sustainable Energy Reviews.2010, 1
[9]
Numerical study for enhancing the thermal conductivity of phase change material (PCM) storage using high thermal conductivity porous matrix.[J].Osama Mesalhy;Khalid Lafdi;Ahmed Elgafy;Keith Bowman.Energy Conversion and Management.2004, 6
[10]
Tetradecane and hexadecane binary mixtures as phase change materials (PCMs) for cool storage in district cooling systems [J].
Bo, H ;
Gustafsson, EM ;
Setterwall, F .
ENERGY, 1999, 24 (12) :1015-1028