[1]
Xiao Dekai, Zhang Xiaoyun, Suan Anyuan. Research progress of thermoplastic composite material. Shandong Chemical Industry, 2007, 36 (2): 15-21.
Google Scholar
[2]
Ji Qin, Lang Wanzhong, Zheng Feiyin, Guo Yajun. Preparation and properties of PES-C ultrafiltration membrane. Journal of Functional Polymers, 2012, 25(2). 184-190.
Google Scholar
[3]
Yan Tianting. Study on the improvement of heat-shielding performance of polyamide fabric by the vermiculite/ PES-C composite membrane. Master thesis Donghua University, (2010).
Google Scholar
[4]
Chen Ping, Lu Chun, Wang Jing, Zhang Chengshuang, Yu Qi. Study on the interface of continuous fiber reinforced PPESK resin composite material. Acta Polymerica Sinica, 2011, (1). pp.38-47.
Google Scholar
[5]
SUN W N, Chen C X, Li J D, Lin Y Z. Chinese J Polym Sci, 2009, 27(2): 165-172.
Google Scholar
[6]
Ping Chen, Ming Sun, Chun Lu. China patent, CN200410050246. 6. 2004-08-10.
Google Scholar
[7]
Ping Chen, Chun Lu, Ding Zhenfeng. China patent, ZL200510047183. 3. 2008-12-17.
Google Scholar
[8]
Chen P, Wang J, Li H. Surf Interface Anal, 2009, 41: 38-43.
Google Scholar
[9]
Zhang C S, Chen P, Liu D. Surf Interface Anal, 1009, 41: 187-192.
Google Scholar
[10]
Wang J, Chen P, Lu C, Chen H, Li H, Sun B L. Surf Coat Technol, 2009, 203: 3722-3727.
Google Scholar
[11]
Jia C X, Chen P, Li B, Wang Q, Lu C, Yu Q. Surf Coat Technol, 2009, 204: 3668-3675.
Google Scholar
[12]
Liu Jie, Bai Yanxia, Tian Yuli, Huang Xiangyu, Wang Chunhua, Liang Jieying. Influence of electrochemical surface treatment on carbon fiber structure and performance. Acta Materiae Compositae Sinica, 2012, 29 (2): 16-25.
Google Scholar
[13]
Ji Chunxiao, Liu Lihua, Cao Wenjuan. Research progress of treatment methods of carbon fiber surface. Petrochemical Technology and Economy. 2011, 27(2): 57-61.
Google Scholar
[14]
Fu Qian, Wang Fengde, Liu Xiaoyun. Aerospace Materials & Technology, 2008, 1: 15-18.
Google Scholar
[15]
Kobashi K, Chen Z Y, Lomeda J. Chem Mater, 2007, 19(2): 291-300.
Google Scholar
[16]
Wang Yunying, Meng Jiangyan, Chen Xuebin et at,. Influences of mechanical properties of composite materials. [J]. Hi-Tech Fiber & Application. 2003, 28(3): 36-38.
Google Scholar
[17]
Qian Xin, Zhi Jianhai, Wang Xuefei, Zhang Yonggang, Yang Jianxing. Influence of carbon fiber surface structure on hygroscopic properties of composite material. Journal of Inorganic Material. 2013. 28(2): 189-194.
Google Scholar
[18]
Rangel, Elidiane C, MacHida, Munemasa, Durrant, Steven F. Cruz, Nilson C. A novel plasma technique for surface treatment: The plasma expander. IEEE Transactions on Plasma Science, 2012, 40 (2): 492-496.
DOI: 10.1109/tps.2011.2178272
Google Scholar
[19]
Aida, Hideo, Takeda, Hideoshi, Aota, Natsuko, Kim, Seong-Woo, Koyama, Koji. Surface treatment for GaN substrate comparison of chemical mechanical polishing and inductively coupled plasma dry etching. Sensors and Materials, 2013, 25 (3): 189-204.
DOI: 10.18494/sam.2013.846
Google Scholar
[20]
Subasri R, Jyothirmayi A, Reddy D S. Effect of plasma surface treatment and heat treatment ambience on mechanical and corrosion protection properties of hybrid sol-gel coatings on aluminum. Surface and Coatings Technology, 2010, 205 (3): 806-813.
DOI: 10.1016/j.surfcoat.2010.07.117
Google Scholar
[21]
Chen Ping, Lu Chun, Yu Qi, Sun Ming. Interface properties of continuous fiber reinforced PPESK resin matrix composite. Chinese Journal of Materials Research, 200519(2): 159-164.
Google Scholar