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纳米SiO_2对双酚A环氧树脂电子束固化特性的影响 被引量:1

EFFECT OF NANO-SiO_2 ON ELECTRON BEAM CURING CHARACTERISTICS OF BISPHENOL A EPOXY RESIN SYSTEM
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摘要 探讨了电子束固化纳米SiO2/双酚A环氧树脂复合材料体系的温度、固化度、固化区域的尺寸和动态力学性能随纳米粒子含量的变化规律,研究了纳米SiO2对体系电子束辐射固化特性的影响。结果表明,随着纳米粒子含量的增加,体系的放热峰逐渐降低;少量纳米粒子的加入有助于增大试样固化区域的尺寸、提高固化度、玻璃化转变温度和高温模量;纳米SiO2的加入改变了电子束的传播途径,但其电子束固化生长机制与未加入纳米粒子的纯树脂体系相似。 Nano-SiO2 particles were added in the bisphenol A epoxy resin. The curing characteristics of the nano-SiO2/epoxy resin system were researched. The effects of nano-SiO2 content on reaction temperature, gel fraction,dimension of the cured area and dynamic mechanic performance of the electron beam (EB) cured epoxy resin system were investigated. The results show that the exothermal peak of the curing system decreases with the increasing of nano-SiO2 content, and a small amount of nano-SiO2 particles contribute to increasing the dimension of the cured area, gel fraction, glass temperature and high temperature modulus. The growth mechanism of the system with nano-SiO2 particles is similar to that without nano-SiO2 particles, although the propagation path of EB is changed by nano-SiO2 particles.
出处 《复合材料学报》 EI CAS CSCD 北大核心 2005年第4期11-16,共6页 Acta Materiae Compositae Sinica
基金 国家自然科学基金项目(59833110) 国家863项目(2001AA335020)
关键词 环氧树脂 电子束固化 纳米SIO2 固化特性 epoxy resin electron beam cured nano-SiO2 curing characteristics
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参考文献14

  • 1胡圣飞,徐声钧,李纯清.纳米(nm)级无机粒子对塑料增韧增强研究进展[J].塑料,1998,27(4):13-16. 被引量:42
  • 2郑亚萍,宁荣昌,乔生儒.环氧树脂基纳米复合材料研究进展[J].化工新型材料,2000,28(3):17-18. 被引量:38
  • 3张佐光,隋刚,仲伟虹.电子束辐射固化环氧树脂的反应过程分析[J].高等学校化学学报,2003,24(8):1506-1510. 被引量:4
  • 4Sui G, Zhang Z G, Chen C Q, et al. Analyses on curing process of electron beam radiation in epoxy resins [J]. Materials Chemistry and Physics, 2002, 78(2): 349-357.
  • 5Sui G, Zhang Z G, Liang Z Y, et al. Dynamic mechanical studies on epoxy resins cured by electron beam radiation [J].Materials Science and Engineering, 2003, A342: 28-37.
  • 6隋刚,张佐光,袁宇慧,李敏,李凤梅.增强纤维对环氧树脂基体电子束固化特征的影响研究[J].复合材料学报,2003,20(2):1-6. 被引量:4
  • 7Klosterman D A. Characteristics of an electron beam used for basic research studies on composites curing [A]. In: Proceeding of the 48th International SAMPE Symposium and Exhibition (Vol. 48 Ⅱ ) [C]. Long Beach: SAMPE (The Soicety for the Advancement of Material and Process Engineering), 2003. 2370-2385.
  • 8Li F M, Bao J W, Chen X B, et al. Factors influencing EB curing of epoxy matrix [J]. Radiation Physics and Chemistry, 2002, 2863(3-6): 557-561.
  • 9Zhang Z G, Sui G, Zhong W H, et al. Effect of heat treatment on thermomechanical properties of electron beam cured epoxy resins [J]. Polymer and Polymer Composites, 2002,10(6): 467-480.
  • 10Zsigmond B, Halasz L, Czvikovszky T. Electron beam processing of carbon fiber reinforced braided composites [J].Radiation Physics and Chemistry, 2003, 67(3-4): 441-445.

二级参考文献27

  • 1熊传溪,闻荻江,皮正杰.超微细Al_2O_3增韧增强聚苯乙烯的研究[J].高分子材料科学与工程,1994,10(4):69-73. 被引量:131
  • 2戴光松,吴世康.用吸收光谱法测定鎓盐光解生成酸的量子产率[J].感光科学与光化学,1995,13(4):358-361. 被引量:5
  • 3宋国君,舒文艺.聚合物基纳米复合材料[J].材料导报,1996,10(4):57-62. 被引量:44
  • 4[1]Parrot P, His S, Boursereau F. Electron beam cured composites [J]. SAMPE, 1999,44: 1354-1358.
  • 5[2]Singh A, Saunders C B, Barnard J W, et al. Electron processing of fibre-reinforced advanced composites [J]. Radiat Phys Chem, 1996, 48(2): 153-170.
  • 6[3]Lopata V J, Saunders C B, Singh A. Electron-beam-curable epoxy resins for the manufacture of high-performance composites [J]. Radiat Phys Chem, 1999, 56(4): 405-415.
  • 7[4]Saunders C B, Lopata V, Barnard J, et al. Electron beam curing--taking good ideas to the manufacturing floor [J]. Radiat Phys Chem, 2000, 57(3-6): 441-445.
  • 8[5]Chappas W J, Devney B G, Olding R P, et al. EB curing of maritime composite structures [J]. Radiat Phys Chem, 1999, 56(4): 417-427.
  • 9[6]Goodman D L, Birx D L, Palmese G R, et al. Composite curing with high energy electron beams [J]. SAMPE, 1996, 41: 207-218.
  • 10[7]Janke C J, Norris R E, Yarborough K, et al. Critical parameters for electron beam curing of cationic epoxies and property comparison of electron beam cured cationic epoxies versus thermal cured resins and composites [J]. SAMPE, 1997,42: 477-486.

共引文献92

同被引文献11

  • 1Berejka A J,Eberle C.Electron beam curing of composites in North America[J].Radiation Physics and Chemistry,2002,63:551-556.
  • 2Zhang Zuoguang,Li Yubin,Wu Yan,et al.Exothermic effect in the process of electron-beam curing of epoxy resins[J].Journal of Applied Polymer Science,2004,94(5):2217-2222.
  • 3Zhang Zuoguang,Sui Gang,Zhong Weihong,et al.Effect of heat treatment on thermomechanical properties of electron beam-cured epoxy resins[J].Polymer and Polymer Composites,2002,10(6):467-480.
  • 4Zsigmond B,Halasz L,Czvikovszky T.Electron beam processing of carbon fibre reinforced braided composites[J].Radiation Physics and Chemistry,2003,67(3/4):441-445.
  • 5Korenev S.Electron beam curing of composites[J].Vacuum,2001,62:233-236.
  • 6Ghosh N N,Palmese G R.Electron-beam curing of epoxy resins:Effect of alcohols on cationic polymerization[J].Bulletin of Materials Science,2005,28(6):603-607.
  • 7Li Yuntao,Morgan R J,Tschen F,Sue H J,Lopata V.Electron-beam curing of bismaleimide-reactive diluent resins[J].Journal of Applied Polymer Science,2004,94(6):2407-2416.
  • 8Crivello J V,Fan M,Bi D.The electron beam-induced cationic polymerization of epoxy resins[J].Journal of Polymer Science,1992,44:9-16.
  • 9Ribeiro R,Morgan R J,Bonnaud L,Lu J,Sue H J,Choi J,Lopata V.Characterization of the electron beam curing of cationic polymerization of diglycidylether of bisphenol A epoxy resin[J].Journal of Composite Materials,2005,39(16):1433-1448.
  • 10Anseth K S,Bowman C N,Peppas N A.Dynamic mechanical studies of the glass transition temperature of photopolymerized multifunctional acrylates[J].Polymer Bulletin,1993,31:229-233.

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