材料导报
材料導報
재료도보
MATERIALS REVIEW
2009年
z2期
307-312,321
,共7页
储能密度%电容器%介电材料
儲能密度%電容器%介電材料
저능밀도%전용기%개전재료
energy storage density%capacitor%dielectric materials
介绍了电介质材料储能密度的概念和测量方法,分别对陶瓷材料、聚合物材料和陶瓷-聚合物复合介电材料的研究进展进行了概述.在此基础上指出,在复相介电材料制备方法、组分优选、表面改性和加工工艺等方面进行深入研究是进一步提高电介质材料储能密度的有效途径.
介紹瞭電介質材料儲能密度的概唸和測量方法,分彆對陶瓷材料、聚閤物材料和陶瓷-聚閤物複閤介電材料的研究進展進行瞭概述.在此基礎上指齣,在複相介電材料製備方法、組分優選、錶麵改性和加工工藝等方麵進行深入研究是進一步提高電介質材料儲能密度的有效途徑.
개소료전개질재료저능밀도적개념화측량방법,분별대도자재료、취합물재료화도자-취합물복합개전재료적연구진전진행료개술.재차기출상지출,재복상개전재료제비방법、조분우선、표면개성화가공공예등방면진행심입연구시진일보제고전개질재료저능밀도적유효도경.
The concept and measurement methods of energy storage density in the dielectric materials are introduced. According to recent research, ceramic and polymer dielectric materials and their composites with high energy storage density are reviewed. With reference to the current research progress, it can be concluded that the energy storage density of dielectric composite materials could be improved by proper preparation methods, components optimization, surface modification and the controlling of processing procedures.