文章摘要
高性能纤维的表面改性及其与橡胶基体的界面粘合性能研究进展
Research Progress of Surface Modification of High-performance Fiber and Its Interfacial Adhesion Property with Rubber Matrix
投稿时间:2020-03-02  修订日期:2020-03-02
DOI:10.12136/j.issn.1000-890X.2020.07.0545
中文关键词: 高性能纤维  表面改性  橡胶  界面  粘合性能  研究进展
英文关键词: high-performance fiber  surface modification  rubber  interfacial  adhesion property  research progress
基金项目:国家自然科学基金资助项目(51833002,51790501,51673013)
作者单位E-mail
王 磊* 中国航发北京航空材料研究院 454955976@qq.com 
孙全吉 中国航发北京航空材料研究院  
赵文博 中国航发北京航空材料研究院  
贾丽华 滨州市高级技工学校  
张 博 北京化工大学 材料科学与工程学院 先进弹性体材料研究中心  
王文才 北京化工大学 材料科学与工程学院 先进弹性体材料研究中心  
田 明 北京化工大学 材料科学与工程学院 先进弹性体材料研究中心  
范召东 中国航发北京航空材料研究院  
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中文摘要:
      从化学改性、物理改性和仿生修饰三个方面介绍高性能纤维的表面改性方法,并阐述提高高性能纤维与橡胶基体的界面粘合性能的研究进展。化学改性是通过化学活化刻蚀和引入活性基团等方式改善高性能纤维与橡胶基体的界面粘合性能,但反应不易控制,且化学改性存在环境污染问题,不易实现工业化;物理改性是通过紫外光辐照接枝以及等离子体、超声波、高能射线等处理对高性能纤维表面进行改性,可有效提高纤维与橡胶基体的界面粘合性能,值得进一步研究;新型环保的绿色浸渍体系及仿生修饰方法将在未来发挥一定的作用。
英文摘要:
      In this paper,the surface modification methods of high-performance fiber were introduced from three aspects including chemical modification,physical modification and biomimetic modification,and the research progress on the improvement of the interfacial adhesion property between high-performance fiber and rubber matrix was discussed. Chemical modification was realized by chemical etching and introduction of active group,leading to the improvement of the interfacial adhesion. However,the reaction of chemical modification was not easy to control,the process usually brought environmental pollution,and it was difficult for industrialization. Physical modification was mainly to modify the surface of highperformance fiber by UV irradiation grafting and plasma,ultrasonic and high energy ray treatment,which could also enhance the adhesion property,and was worthy of further study. In addition,new environmentally friendly dipping system and biomimetic modification under development would play a role in the future.
Author NameAffiliationE-mail
WANG Lei AECC Beijing Institute of Aeronautical Materials 454955976@qq.com 
SUN Quanji AECC Beijing Institute of Aeronautical Materials  
ZHAO Wenbo AECC Beijing Institute of Aeronautical Materials  
JIA Lihua Binzhou Senior Technical School  
ZHANG Bo Beijing University of Chemical Technology/Center of Advanced Elastomer Materials  
WANG Wencai Beijing University of Chemical Technology/Center of Advanced Elastomer Materials  
TIAN Ming Beijing University of Chemical Technology/Center of Advanced Elastomer Materials  
FAN Zhaodong AECC Beijing Institute of Aeronautical Materials  
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