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固化条件对环氧树脂/丙烯酸酯橡胶共混体系结构与性能的影响

DOI: 10.3724/SP.J.1105.2012.12147, PP. 1234-1242

Keywords: 环氧树脂,丙烯酸酯橡胶,增韧,相结构,力学性能

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Abstract:

利用丙烯酸酯橡胶(ACM)提高热固性环氧树脂(EP)的韧性,系统研究共混体系固化条件对材料结构和性能的影响.研究表明,固化前环氧树脂与丙烯酸酯橡胶在整个组成范围内为均相体系,固化过程中两组份分子量不断增大,部分组成环氧树脂/丙烯酸酯橡胶共混体系(80/20及50/50)发生反应诱导相分离现象(RIPS).在发生反应诱导相分离的体系中,分相后的环氧树脂和丙烯酸酯橡胶两相彼此包含对方的组分,是一种不彻底的相分离.同时,固化后材料的结构与性能强烈依赖于所用固化条件(包括固化时间、固化温度及固化剂含量等).因此,可以通过调节体系固化条件实现对环氧树脂/丙烯酸酯橡胶共混体系结构和性能的调控.

References

[1]  1 Jiang Xueliang(江学良), Zhang Yong(张勇),Zhang Yinxi(张隐西).China Plastic(中国塑料),2003,17(7):6~10
[2]  3 Schauer E,Berglund L.Polymer,2002,43:1241~1248
[3]  4 Wei Zhenjie(魏振杰),Liu Weiqu(刘伟区),Li Hongjing(李宏静),Ma Songqi(马松琪),Yan Zhenlong(闫振龙).Acta Polymerica Sinica(高分子学报),2012,(2):148~153
[4]  5 Shen Wei(沈威),Wang Xiaoping(王小萍).Thermosetting Resin(热固性树脂),2010,25(3):49~54
[5]  6 Shi Minxian(石敏先),Huang Zhixiong(黄志雄),Li Yaming(郦亚铭).Polymer Materials Science & Engineering(高分子材料科学与工程),2008,24(2):47~50
[6]  7 Su Hang(苏航),Wei Borong(魏伯荣),Gong Dajun(宫大军).China Adhesives(中国胶粘剂),2007,16(11):4~7
[7]  8 Han Xiaozu(韩孝族),Wang Lianzhi(王莲芝),Zhao Guoqin(赵国琴).Acta Polymerica Sinica(高分子学报),1989,(2):225~229
[8]  9 Yamanaka K,Takagi Y.Polymer,1989,60:1839~1844
[9]  19 Zhao L,Guan J,Ma H,Sun Z.Chinese J Polym Sci,2010,28(6):961~969
[10]  23 Wei Chun(韦春),Tan Songting(谭松庭),Liu Minna(刘敏娜).China Plastic(中国塑料),2001,15(10):34~37
[11]  24 Wang Xi(王熙),Zheng Shuirong(郑水蓉),Wang Rumin(王汝敏).Material Report:Review(材料报道:综述篇),2008,23(8):9~12
[12]  25 Xue Shukai(薛书凯),Zhang Wei(张炜),Hou Weiguo(侯卫国).Thermosetting Resin(热固性树脂),2005,20(5):36~40
[13]  26 Wei Chun.Polym Mater Sci Eng,2006,22(3):137~140
[14]  27 Qiu Hongbin(邱宏斌).Polymer Bullentin(高分子通报),1997,(3):179~181
[15]  28 Mao Jie(孔杰),Mao Rongchang(宁荣昌),Bai Zhenquan(白真权),Tang Yusheng(唐玉生).Adhension(粘接),2002,23(6):29~32
[16]  29 Iwakura T,Inada T,Kader M A.e-Journal of Soft Material,2006,2:13~19
[17]  30 Liang Cheng(梁 诚).Techno-Economics in Petrochemicals(石油化工技术经济),2002,20(4):28~32
[18]  31 Huang Yongyan(黄永炎).Raw Material(原材料),1999,(2):2~4
[19]  33 Guo Q P,Alexia H.J Polym Sci Polyom Phys,2006,44:889~899
[20]  2 Cao Wanrong(曹万荣),Fu Kaibin(符开斌),Di Ningyu(狄宁宇).Insulating Materials(绝缘材料),2009,42(6):31~36
[21]  10 Ratna D.Macromol Res,2004,12(1):11~21
[22]  11 Inoue T.Prog Polym Sci,1995,20:119~153
[23]  12 Yamanaka K,Inoue T.Polymer,1989,30:662~667
[24]  13 Schauer E,Berglund L,Pena G.Polymer,2001,43:1241~1248
[25]  14 Hodgkin J H,Simon G P,Varley R J.Polymer Adv Technol,1998,9:3~10
[26]  15 Chen Fenghua(陈凤华),Zhang Yan(张艳),Shi Weichao(史伟超),Yang Shiyong(杨士勇),Zhao Xiaojuan(赵晓娟),Han Zhichao(韩志超).Acta Polymerica Sinica(高分子学报),2012,(6):673~678
[27]  16 Wang Huimin(王慧民),Liang Weirong(梁伟荣).Thermosetting Resin(热固性树脂),1997,12(4):12~14
[28]  17 Barral L,Cano J.Polymer,2000,41:2657~ 2666
[29]  18 Jang J,Shin S J.Polymer,1995,36:1199~ 1207
[30]  20 Chou Shilong(仇士龙),Wang Yuting(王玉婷),Wang Chengshuang(王成双),Yuan Zuanru(袁钻如),Huang Yuan(黄玉安),Xie Hongfeng(谢鸿峰),Cheng Rongshi(程镕时).Acta Polymerica Sinica(高分子学报),2012,(1):25~32
[31]  21 Yung K C.Compos Sci Technol,2009,69(2):260~264
[32]  22 Liu Xiwen(刘西文),Yang Zhongwen(杨中文).World Plastics(国外塑料),2008,26(1):62~65
[33]  32 Ping Lin(平琳).Journal of Zhengzhou Tetile Institute(郑州郑州纺织工学院学报),1996,7(3):51~54

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