首页 | 本学科首页   官方微博 | 高级检索  
     

低温等离子体改性效果时效性的研究进展
引用本文:王振欣,梁小平,王月然,任婉婷,付中玉,李健,聂锦梅.低温等离子体改性效果时效性的研究进展[J].纺织学报,2011,32(2):149-154.
作者姓名:王振欣  梁小平  王月然  任婉婷  付中玉  李健  聂锦梅
作者单位:1. 天津工业大学中空纤维膜材料与膜过程教育部重点实验室 2. 中国纺织科学研究院生物源纤维制造技术国家重点实验室 3. 北京服装学院服装材料研究开发与评价北京市重点实验室
摘    要:低温等离子体技术是一种清洁且高效节能的新型材料表面改性技术。该技术在改善材料表面性能的同时,仍可保持本体性能的特色,在材料表面改性方面具有广阔的应用前景。然而,经过低温等离子体处理的聚合物材料的改性效果会随时间发生明显衰减,改性效果存在时效性。概述了时效性的产生机制、表征方法以及克服时效性的方法,重点讨论了聚合物的结构、等离子体处理工艺参数,包括等离子体工作气氛、处理时间、处理功率,放置环境等因素对时效性的影响。

关 键 词:表面改性  低温等离子体  聚合物材料  时效性
收稿时间:2010-01-08;

Research progress in ageing effect of surface modification by low temperature plasma
WANG Zhenxin,LIANG Xiaoping,WANG Yueran,REN Wanting,FU Zhongyu,LI Jian,NIE Jinmei.Research progress in ageing effect of surface modification by low temperature plasma[J].Journal of Textile Research,2011,32(2):149-154.
Authors:WANG Zhenxin  LIANG Xiaoping  WANG Yueran  REN Wanting  FU Zhongyu  LI Jian  NIE Jinmei
Affiliation:1. Key Laboratory of Hollow Fiber Material and Process of Ministry of Education, Tianjin Polytechnic University 2. State Key Laboratory of Bio-base Fiber Manufacturing Technology, China Textile Academy 3. Beijing Key Laboratory of Clothing Materials R&D and Assessment, Beijing Institute of Fashion Technology
Abstract:Low temperature plasma, as a novel surface modification technology, is characterized by clean, high efficiency and energy-saving. Plasma treatment can improve the surface properties of polymer materials without affecting their bulk features, which impart itself a potentially abroad application in the field of surface modification. However, the plasma-improved surface properties usually decay with time, known as ageing effect of plasma treatment. The mechanism and characterization methods of aging effect as well as approaches to overcome ageing effect were briefly reviewed. The influences of polymer structure, plasma treatment parameters, such as gas, treating time and power, and storage environment on ageing behavior were especially discussed.
Keywords:
本文献已被 万方数据 等数据库收录!
点击此处可从《纺织学报》浏览原始摘要信息
点击此处可从《纺织学报》下载全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号