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利用钛盐成膜工艺在热镀锌层表面获得了色泽光亮、耐蚀性能优良的银白色转化膜层.采用扫描电镜、能谱仪、电化学极化和盐水浸泡方法研究了钛盐转化膜层的表面形貌,元素组成和耐蚀性能.分析了钛盐溶液成分及工艺参数对热镀锌层表面转化膜的耐蚀性能影响.确定的最佳工艺条件为:Ti(SO_4)_21 g/L,H_2O_2 60mL/L,pH 0.5~1.0,处理温度25~30℃,处理时间10 min.热镀锌层经此工艺处理后,耐蚀性能明显提高.

A bright and silvery white conversion coating with good corrosion resistance was obtained on the surface of hot-dip galvanized coating. The morphology, composition and corrosion resistance of the titanium conversion coating were analyzed by scanning electron microscopy, energy-dispersive spectroscopy, electrochemical polarization and salt water immersion test. The effects of solution composition and process parameters on the corrosion resistance of the conversion coatings on the surface of hot-dip galvanized coating were analyzed. The optimal process parameters were determined as follows: Ti(SO_4)_2 1 g/L, H_2O_2 60 mL/L, pH 0.5-1.0, temperature 25-30 ℃, time 10 min. The corrosion resistance of the hot-dip galvanized coating is greatly improved by the titanium conversion coating.

参考文献

[1] Marder AR. .The metallurgy of zinc-coated steel [Review][J].Progress in materials science,2000(3):191-271.
[2] N. Pistofidis;G. Vourlias;S. Konidaris;E. Pavlidou;A. Stergiou;G. Stergioudis .Microstructure of zinc hot-dip galvanized coatings used for corrosion protection[J].Materials Letters,2006(6):786-789.
[3] 罗韦因,徐金来,吴成宝,刘钧泉.镀锌及锌合金层低毒、无毒钝化工艺[J].材料保护,2006(05):40-45.
[4] Magalhaes AAO;Margarit ICP;Mattos OR .Molybdate conversion coatings on zinc surfaces[J].Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry,2004(2):433-440.
[5] 刘文君,张英杰,章江洪,苏玉华.工艺因素对硅酸盐无铬钝化中耐蚀性的影响[J].表面技术,2007(01):60-61,96.
[6] ZHU Li-qun,YANG Fei,HUANG Hui-jie.Investigation of Formation Process of the Chrome-free Passivation Film of Electrodeposited Zinc[J].中国航空学报(英文版),2007(02):129-133.
[7] 宇津木隆宏;大堀俊一;鈴木雅千 等.亜鉛めっきのクロムフリ一化成処理技術[R].福島県:ハイテクプザ,2003.
[8] 张洪生,杨晓蕾,陈熹.植酸在金属防护中的应用[J].腐蚀科学与防护技术,2002(04):238-238,243.
[9] WILCOX G D;GABE D R .Passivation studies using group VIA anions--Part 5:cathodic treatment of zinc[J].British Corrosion Journal,1987,22(04):254-258.
[10] 宫丽,卢燕平.热镀锌钢板钼酸盐钝化膜的改性及耐蚀性[J].钢铁研究学报,2007(03):88-92.
[11] 徐斌,满瑞林,倪网东,胡豫,曹晓燕,颜莎,史燕.镀锌钢板表面硅烷、铈盐复合膜的制备及耐腐蚀性能研究[J].涂料工业,2007(12):46-50.
[12] 刘飞.钛盐钝化在锡镀层和黄铜带上的应用[J].电镀与环保,2000(03):29-31.
[13] 郭瑞光,杨杰,康娟.铝合金表面钛酸盐化学转化膜研究[J].电镀与涂饰,2006(01):46-48.
[14] SMIT M A;HUNTER J A;SHARMAN J D B et al.Effects of thermal and mechanical treatments on a titanium-based conversion coating for aluminium alloys[J].Corrosion Science,2004,46(07):1713-1727.
[15] 冯强,郭瑞光,马建青,吉铮.钢铁表面钛盐化学转化膜研究[J].电镀与涂饰,2008(10):24-25,28.
[16] K. Aramaki .Inhibition effects of inorganic multivalent cations on iron corrosion in aerated sodium sulfate solution[J].Corrosion: The Journal of Science and Engineering,1999(2):157-165.
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