The New Materials Automotive Electrophoresis Pretreatment - Oxsilan Technology

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Abstract:

Oxsilan technology has begun replace the iron and zinc phosphating general industry gradually. Oxsilan technology pre-treatment technology has some advantages such as environmental protection, free of harmful heavy metals, residue-free and low energy consumption, but the domestic automotive pretreatment technology has not yet applied. Through oxsilan technology, this paper carries out cycle test, stone chipping resistance, salt spray test, using cold rolled (CRS), electro-galvanized sheet (EG), hot dip galvanized sheet (HDG) and aluminum (Al) and compares with sample performance of electrophoretic coating of oxsilan technology and phosphate electrophoresis film. The results show that oxsilan technology has potential to replace iron and zinc phosphating technology in the automobile pre-treatment technology.

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191-197

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January 2012

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] X.W. Li, X.X. Li and G.C. W: Surface modification of diatomite using polyaniline [J]. Materials Chemistry and Physics, 102 (2-3), (2007), pp.140-143.

DOI: 10.1016/j.matchemphys.2006.11.014

Google Scholar

[2] J.L. Wu, Y.S. Yang and J.H. Lin: Advanced tertiary treatment of municipal wastewater using raw and modified diatomite[J]. Journal of Hazardous Materials, 27 (1-3) (2005), pp.196-203.

DOI: 10.1016/j.jhazmat.2005.07.016

Google Scholar

[3] A. Kamnarkar, S.S. Chauhan and J.M. Mokak, et al.: Mechanical properties of woof fiber reinforced polypropylene composites: Effect of anovel compatihilizer with isocyanate functional group [J]. Compoites: Part A, (2007), pp.227-233.

DOI: 10.1016/j.compositesa.2006.05.005

Google Scholar

[4] M. Bengtsson and K. Oksman: The use of silane technology in crosslinking polyethylene/wood flour composites [J]. Composites: Part A, (2006), p.765.

DOI: 10.1016/j.compositesa.2005.06.014

Google Scholar

[5] J.Y. Zhao, et al.: Research of Silane Modification Reaction in the Preparation of Wood and Plastic Composites [J]. Jilin Agricultural University, 5, (2010), p.569.

Google Scholar

[6] GE min el . Synthesis of polycarbosilane modified by B-trichloroborazine and its ceramic conversion [J]. Materials Science and Technology, 4, (2010).

Google Scholar

[7] H.B. Li, L.T. Zhang and L.F. Cheng: Effcct of the polycarbosilanc structure on its final ceramic yield [J]. Journal of the Europcan Ceramic Socicty, 28(4), (2008), pp.887-891.

Google Scholar