Phosphatization Coating-Forming Mechanism Based on Green Phosphating Accelerator Rare Earth Nitrate

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Abstract:

Experimental results show that the samples gained in bath added Rare earth nitrate (REN), relative to the sample got in bath without REN, improve the anti-corrosion power of the coating because of increasing of covering rate of formless crystal Zn2Fe(PO4)2·4H2O (marked P) crystals and the ratio of P/(P+H) (H is the mark of Zn3(PO4)2 crystal) in the coating, combination of which with components parsing by EDS indicates that the sequence of contribution elements P and Zn to erosion resistance of coatings is P>Zn. And the correlative mechanism was discussed, which has it clear that RE is materially a catalyst holding excellent ability of carrying oxygen and cathode depolarization, its concentration gets so constant in certain range that it is much steadier and more efficient than the usual consumptive oxidants like nitrates. In a word, REN plays the role of surface regulator, accelerant and densification agent, which speeds up the phosphating, and bids it effective to enhance the anti-corrosion power of the coating. The addition of REN, not only promote the phosphating film formation and substantial reduction or exemption of nitrite. So, REN is green phosphating accelerator of live up to one's name.

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Advanced Materials Research (Volumes 838-841)

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2806-2810

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November 2013

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Zhang Jing-shuang, Wang Jia-lin, Yang Zhe-long, et al., Investigation of the rare-earth composite additive in phosphating process at medium temperature, Electroplating & Pollution Control, 5 (2000) 25-27.

Google Scholar

[2] An Mao-zhong, Tu Zhen-mi, Yang Zhe-long, et al., Infection and effect of rare earth compounds in phosphatization, Materials Protection, 11(2000) 20-21, 28.

Google Scholar

[3] Kang Cuirong, Meng Qingying, Yang Zhian, et al., The electron microstructure analysis of zinc system phosphate coating, Journal of Tianjin University, 5(1996) 740-744.

Google Scholar

[4] Zeng Hualiang, Yang Jiachang, Electrolysis and translation coating, Light Industry Press, Beijing, (1986).

Google Scholar

[5] WANG Jian-xin, Manufaiture of normal tempreture and fast parkerizing fluid, Journal of Qiqihar University, 4(2002) 27-29.

Google Scholar