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KH-151硅烷改性纳米ZrO_(2)对铝合金表面环氧树脂涂层防护性能的影响 被引量:1

Effect of Silane Modified Nano-ZrO_(2) on Protective Properties of Epoxy Resin Coating on Aluminum Alloy Surface
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摘要 在6061铝合金表面制备了硅烷改性纳米ZrO_(2)环氧树脂涂层,采用电化学测试和腐蚀试验,研究了纳米ZrO_(2)添加量对硅烷改性纳米ZrO_(2)环氧树脂涂层防护性能的影响,并对比了不同转化处理工艺下涂层的物理性能和防护性能。结果表明:当纳米ZrO_(2)添加量为100 mg/L时,硅烷改性纳米ZrO_(2)环氧树脂涂层试样的极化电阻为2 719Ω·cm^(2)、自腐蚀电流密度为2.528×10^(-6) A·cm^(-2);在经不同转化处理工艺处理的涂层中,硅烷改性纳米ZrO_(2)环氧树脂涂层的平均厚度为55μm,涂层剥离面积比例为5%,附着力达到1级,极化电阻最大,自腐蚀电流密度最小,涂层防护性能最佳。 Silane modified nano-ZrO_(2) epoxy resin coating was prepared on the surface of 6061 aluminum alloy.The effect of nano-ZrO_(2) addition on the protective properties of silane modified nano-ZrO_(2) epoxy resin coating was studied by electrochemical test and corrosion test.The physical properties and protective properties of the coating under different conversion treatment processes were compared.The results showed that when the addition amount of nano-ZrO_(2) was 100 mg/L,the polarization resistance of silane modified nano-ZrO_(2) epoxy resin coating sample was 2 719 Ω·cm^(2),and the self-corrosion current density was 2.528×10~(-6) A·cm~(-2).Among the coatings treated by different conversion treatment processes,the average thickness of silane modified nano-ZrO_(2) epoxy resin coating was 55 μm,the peeling area ratio of the coating was 5%,the adhesion reached level 1,the polarization resistance was the largest,the self-corrosion current density was the smallest,and the coating protection performance was the best.
作者 李红玲 LI Hongling(Xinxiang University,Xinxiang 453003,China)
机构地区 新乡学院
出处 《腐蚀与防护》 CAS CSCD 北大核心 2023年第9期83-89,共7页 Corrosion & Protection
基金 河南省科技发展计划项目(1521023102122) 新乡学院科技创新基金(15ZC16)。
关键词 铝合金 硅烷改性纳米ZrO_(2) 环氧树脂涂层 附着力 aluminum alloy silane modified nano-ZrO2 epoxy resin coating adhesion
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  • 1尹志岚,袁媛,刘昌胜.硅烷偶联剂对不锈钢表面膜基结合强度的影响[J].功能高分子学报,2004,17(2):298-302. 被引量:15
  • 2葛曼珍,杨辉,江仲华,阚红华.溶胶—凝胶过程中硅酸聚合物结构及涂膜特性[J].硅酸盐通报,1994,13(5):32-36. 被引量:6
  • 3邵亚薇,李瑛,王福会,杜元龙.Ti纳米粒子对环氧涂层防护性能的影响[J].中国腐蚀与防护学报,2006,26(2):115-119. 被引量:7
  • 4Akkapeddi M K. Glass fiber reinforced polyamide-6 nanocomposites [J]. Polym. Compos., 2004, 21(4): 576- 585.
  • 5Sangermano M, Malucelli G, Amerio E. Photopolymerization of epoxy coatings containing silica nanoparticles [J]. Prog. org. coat., 2005, 54 (2): 134-138.
  • 6Zhang X H, Xu W J, Xia X N. Toughening of cycloaliphatic epoxy resin by nanosize silicon dioxide [J]. Mater. Lett., 2006, 60(28): 3319-3323.
  • 7Jui M Y, Weng C J, Liao W J. Anticorrosively enhanced PMMA-SiO2 hybrid coatings prepared from the Sol-Gel approach with MSMA as coupling agent [J]. Surf.Coat.Technol., 2006, 201(3-4): 1788-1795.
  • 8Macan J, Ivankovic H, Ivankovic M. Study of cure kinetics of epoxy-silica organic-inorganic hybrid materials [J]. Thermochim. Acta, 2004, 414(2): 219-225.
  • 9Chou T P, Chandrasekaran C, Limmer J. Orgnic-inorgnic hybrid coatings for corrosion protection [J]. J. Non-Crystal. Solids, 2001, 290(9): 153-162.
  • 10Zhou S X, Wu L M, Sun J. The change of the properties of acrylic-based polyurethane via addition of nano-silica [J]. Prog. Org. Coat., 2002, 45(1): 33-42.

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