Pickling behavior of AISI 304 stainless steel in sulfuric and hydrochloric acid solutions
Keywords:
Pickling, Hydrochloric acid, Sulfuric acid, Scale, Stainless steelAbstract
Oxide scales as well as a Cr-depleted layer, which grows between the oxide scale and base metal, are formed on AISI 304 stainless steel surface during high temperature processing. Pickling is an important process which includes mechanical and chemical operations to remove oxide scales, Cr-depleted layers, and to recover the surface passivity. The multi-step pickling is commonly used because of its higher efficiency than a single step pickling. In this study, the multi-step pickling of AISI 304 stainless steel in HCl solution was investigated instead of H2SO4 solution for the first step of pickling. HF+HNO3 mixed acid is traditionally used in the second step of pickling. The pickling mechanism of HCl and H2SO4 was discussed based on weight loss and the pickled surface qualities. It was found that the first step pickling efficiency directly affected the surface qualities of the final pickled sample. HCl solution showed much lower pickling efficiency than H2SO4 solution. This resulted in a high concentration of remaining oxide scales and intergranular attack at the Cr-depleted layer, which cannot be completely removed in the second pickling step. Increasing of HCl concentration and electrolytic current did not improve the pickling efficiency. The addition of a small amount of H2O2, which is a strong oxidizing agent, significantly improves the pickling efficiency of HCl. A smooth surface without any oxide scale and free of intergranular attack could be obtained.Downloads
References
Lacombe, P., Baroux, B. & Beranger, G. (1993). Stainless steel (1st ed.). Les Editions de Physique Les Ulis, France.
Davis, J.R. (Ed.). (1996). Stainless steel; ASM specialty handbook. Ohio, OH:ASM International.
Fontana, M.G. (1987). Corrosion engineering (3rd ed.); Materials science and engineering series. Singapore : McGraw-Hill.
Jones, D.A. (1997). Principles and prevention of corrosion (2nd ed.). Singapore : Prentice Hall.
Ratanamongkolthaworn, S. (2007). Effects of sulfuric acid concentration, temperature, ferrous and ferric ion contents on pickling behavior of AISI 304 stainless steel. Master Thesis in Metallurgical Engineering. Chulalongkorn University.
Li, L.F., Caenen, P., Daerden, M., Vaes, D., Meers, G., Dhondt, C. & Celis, J.P. (2005). Mechanism of single and multiple step pickling of 304 stainless steel in acid electrolytes. Corros. Sci. 47(5) : 1307-1324.
Li, L.F. & Celis, J.P. (2004). Intergranular corrosion of 304 stainless steel pickled in acidic electrolytes. Scripta Mater. 51(10) : 949-953.
Li, L.F. (2002). Pickling of austenitic stainless Steels. Internal review report Alz-Arcelor France.
Li, L.F., Caenen, P. & Celis, J.P. (2008). Effect of hydrochloric acid on pickling of hot-rolled 304 stainless steel in iron chloride-based electrolytes. Corros. Sci. 50(3) : 804-810.
Li, L.F. (2002). Pickling and re-pickling of stainless steel with UGCO and UG3P +H2SO4 electrolytes. Internal review report Alz-Arcelor France.
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