高电压技术2011,Vol.37Issue(11):2746-2751,6.
Surface Treatment of Polypropylene Films Using Homogeneous DBD Plasma at Atmospheric Pressure in Air
Surface Treatment of Polypropylene Films Using Homogeneous DBD Plasma at Atmospheric Pressure in Air
摘要
Abstract
The homogeneous dielectric barrier discharge (DBD) in atmospheric air is most favorable for polymer sur- face modification due to the low cost of operation and the ability of ambient on-line continuous uniform processing. In this paper, polypropylene (PP) films are treated using a homogeneous DBD plasma in atmospheric air. The surface properties of PP films are studied using contact angle and surface energy measurement, scanning electron microscopy (SEM) and Fourier trailsformed infrared spectroscopy (FTIR), and the aging effect after treatment when the treated materials are exposed to open air is also studied, with the modification mechanism being discussed. It is demonstrated that non thermal plasmas generated by homogeneous DBD in atmospheric air is an effective way to enhance the surface properties of PP films. After the pIasma treatment, the surface of PP film is etched, and oxygen-containing polar groups are introduced into the surface. These two processes can induce a remarkable decrease in water contact angle and a remarkable increase in surface energy, and the surface properties of PP films are improved accordingly.关键词
dielectric barrier discharge (DBD)/homogeneous discharge/surface modification/polypropylene (PP) films/hydrophilicity/aging effectKey words
dielectric barrier discharge (DBD)/homogeneous discharge/surface modification/polypropylene (PP) films/hydrophilicity/aging effect分类
信息技术与安全科学引用本文复制引用
FANG Zhi,CAI Ling-ling,LEI Xiao,QIU Yu-chang,Kuffel Edmund..Surface Treatment of Polypropylene Films Using Homogeneous DBD Plasma at Atmospheric Pressure in Air[J].高电压技术,2011,37(11):2746-2751,6.基金项目
Project Supported by National Natural Science Foundation of China( 50707012), State Key Laboratory of Electrical Insulation and Power Equipment ( EIPE11205 ) ,"Qing Lan Project" in Jiangsu Province of China. ()