介绍了无机钝化和有机钝化2类镀锌层无铬钝化工艺的特点、研发现状及难题.同时,介绍了一种新型的ZECCOAT有机-无机复合无铬钝化技术的优缺点,指出有机-无机复合钝化的效果比单一钝化的效果好,将其与纳米技术结合是镀锌层无络钝化的发展方向.
参考文献
[1] | 王雷,刘常升,安成强.镀锌层无机物与有机物复合无铬钝化研究进展[J].电镀与精饰,2011(03):22-26. |
[2] | Hintin B R W;Wilson L .The corrosion inhibition of zinc with cerous chloride[J].Corrosion Science,1989,29(08):967-985. |
[3] | 王济奎;方景礼 .镀锌层表面混合稀土钝化膜的研究[J].中国稀土学报,1997,15(01):31-34. |
[4] | 李鸿宾,陈建设,刘辉,魏绪钧.热镀锌表面铈盐钝化[J].材料与冶金学报,2002(03):203-205. |
[5] | Yasuyuki Kobayashi;Yutaka Fujiwara .Effect of (SO{sub}4){sup}(2-) on the corrosion behavior of cerium-based conversion coatings on galvanized steel[J].Electrochimica Acta,2006(20):4236-4242. |
[6] | 彭天兰,满瑞林,梁永煌.镀锌钢板硅烷与稀土铈盐、镧盐复合钝化的性能及机理[J].材料保护,2009(03):5-8. |
[7] | 韩克平.镀锌层表面硅酸盐防腐膜的研究[J].腐蚀科学与防护技术,1997(02):167. |
[8] | Dalbin S;Maurin G;Nogueira RP;Persello J;Pommier N .Silica-based coating for corrosion protection of electrogalvanized steel[J].Surface & Coatings Technology,2005(2/3):363-371. |
[9] | 董鹏,张英杰.锌镀层硅酸盐钝化膜的耐腐蚀性能[J].材料保护,2010(10):4-6. |
[10] | Y.K. Song;F. Mansfeld .Development of a Molybdate-Phosphate- Silane-Silicate (MPSS) coating process for electrogalvanized steel[J].Corrosion Science: The Journal on Environmental Degradation of Materials and its Control,2006(1):154-164. |
[11] | Corrosion behaviour of molybdate-phosphate-silicate coatings on galvanized steel[J].Corrosion Science: The Journal on Environmental Degradation of Materials and its Control,2009(10):2455. |
[12] | Vukasovich M S;Farr J P G .Molybdate in corrosion inhibition-A review[J].Polyhedron,1986,5(1/2):9-16. |
[13] | Wilcox G D;Gabe D R .Chemical molybdate conversion treatments for zinc[J].Transactions of the Institute of Metal Finishing,1998,25(05):9-17. |
[14] | 郝建军,安成强,邵忠财,常丽丽,刘常升.A3钢镀锌层钼酸盐钝化膜的组成和性能[J].材料研究学报,2006(04):427-430. |
[15] | 肖鑫,龙有前,钟萍,祁燕飞.锌镀层钼酸盐-氟化锆体系钝化工艺研究[J].腐蚀科学与防护技术,2005(03):184-186. |
[16] | 吴成剑,周婉秋,许淳淳,张召恩.有机胺类添加剂对热浸镀锌板钼酸盐钝化膜耐蚀性能的影响[J].腐蚀科学与防护技术,2009(04):377-379. |
[17] | 吴海江,卢锦堂.热镀锌钢板钼酸盐/硅烷复合膜层的耐腐蚀性能[J].材料保护,2008(10):10-13. |
[18] | Yashiro K;Moriga Y .Metal surface coating agent[P].US,4341558,1997-07-27. |
[19] | 胡会利,李宁,程瑾宁.镀锌植酸钝化膜耐蚀性的研究[J].电镀与环保,2005(06):21-25. |
[20] | 杨柳 .镀锌钢板的无铬钝化研究[D].南昌航空大学,2007. |
[21] | 闫捷,赵立红,蒋元力,魏灵朝,安茂忠.镀锌层单宁酸钝化膜的耐蚀性[J].电镀与涂饰,2011(08):32-35. |
[22] | 张安富 .镀锌系钢板表面处理新工艺[J].表面技术,1991,20(05):29-33. |
[23] | 周宁琳.有机硅聚合物导论[M].北京:科学出版社,2000:168-172. |
[24] | M. F. Montemor;W. Trabelsi;S. V. Lamaka;K. A. Yasakau;M. L. Zheludkevich;A. C. Bastos;M. G. S. Ferreira .The synergistic combination of bis-silane and CeO{sub}2·ZrO{sub}2 nanoparticles on the electrochemical behaviour of galvanised steel in NaCl solutions[J].Electrochimica Acta,2008(20):5913-5922. |
[25] | Montemor M.F.;Simoes A.M. .The corrosion performance of organosilane based pre-treatments for coatings on galvanised steel[J].Progress in Organic Coatings: An International Review Journal,2000(1):17-26. |
[26] | Montemor MF;Trabelsi W;Zheludevich M;Ferreira MGS .Modification of bis-silane solutions with rare-earth cations for improved corrosion protection of galvanized steel substrates[J].Progress in Organic Coatings: An International Review Journal,2006(1):67-77. |
[27] | 郭崇武,赖奂汶.镀锌层无铬钝化技术研究进展[J].全面腐蚀控制,2011(07):13-15,24. |
[28] | 赖奂汶,郭崇武.高性能无铬钝化技术[J].电镀与环保,2012(06):35-37. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%