Corrosion Behavior Study of 22MnB5 Steel and its Weld Using Electrochemical Method

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Corrosion behaviors of ultra high strength steel 22MnB5 and its weld were studied based on electrochemical method in the present work. Electrochemical measurements such as Tafel polarization curve and electrochemical impedance spectroscopy were performed to investigate the corrosion mechanisms of 22MnB5 steel and its weld. The testing results indicated the weld metal possessed less corrosion resistance than the base metal, and the main reason for this phenomenon is the microstructure variation of the weld metal.

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340-343

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January 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] J. X. Lu, L. Wang: Auto. Tech. & Mater Vol. 2 (2004), pp.1-6.

Google Scholar

[2] J. P. Lin, Q. H. Kong, Z. Xu and J. Y. Min: J. Tongji Univ. (Nat. Sci. ) Vol. 39 (2011), pp.567-571.

Google Scholar

[3] Y. D. Guo: Hot. Work. Tech Vol. 40 (2011), pp.8-11.

Google Scholar

[4] M. Naderi, A. Saeed-Akbari and W. Bleck: Mater. Lett Vol. 62 (2008), pp.1132-1135.

Google Scholar

[5] C. Kim, M.J. Kang and Y. D. Park: Procedia Eng Vol. 10 (2011), pp.2226-2231.

Google Scholar

[6] A. Jahn, M. Heitmanek, J. Standfuss, B. Brenner, G. Wunderlich and B. Donat: Phy. Procedia Vol. 12 (2011), pp.431-441.

DOI: 10.1016/j.phpro.2011.03.054

Google Scholar

[7] H. Karbasian, A. E. Tekkaya: J. Mate. Process. Tech Vol. 210 (2010), pp.2103-2118.

Google Scholar

[8] L. F. He, G. Q. Zhao, H. P. Li and N. Xiang: J. Shanghai Jiaotong Univ. (Sci. ) Vol. 16 (2011), pp.129-132.

Google Scholar

[9] H. S. Liu, J. Bao, Z. W. Xing, B. Y. Song and Y. Y. Yang: Chinese J. Aeronaut Vol. 31 (2010), pp.865-870.

Google Scholar

[10] X. Q. Hu, C. H. Liang and X. N. Wu: Mater. Corros. Vol. 62 (2011), pp.444-448.

Google Scholar

[11] L. Sjogren, G. Camitz, J. Peultier, S. Jacques, V. Baudu, F. Barrau, B. Chareyre, A. Bergquist, A. Pourbaix and P. Carpentiers: Mater. Corros. Vol. 62 (2011), pp.299-309.

DOI: 10.1002/maco.200905552

Google Scholar

[12] F. Rosalbino, G. Scavino and E. Angelini: Mater. Corros. Vol. 62 (2011), pp.357-361.

Google Scholar

[13] I. A. Chaves, R. E. Melchers: Corros. Sci. Vol. 53 (2011), pp.4026-4032.

Google Scholar

[14] M. D. Pereda, C. A. Gervasi, C. L. Llorente and P. D. Bilmes: Corros. Sci. Vol. 53 (2011), pp.3934-3941.

Google Scholar

[15] P. D. Bilmes, C. L. Llorente, C. M. Méndez and C. A. Gervasi: Corros. Sci. Vol. 51 (2009), pp.876-881.

Google Scholar

[16] C. N. Cao, J. Wang and H. C. Lin: J. Chinese Socie. Corros. Protec Vol. 9 (1989), pp.261-270.

Google Scholar