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J Chin Soc Corr Pro  2006, Vol. 26 Issue (4): 241-244     DOI:
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Investigation on the Dissolve and Deposition on Stainless Steel Electrode under Alternating Electric Field by Atomic Absorption Spectroscopy
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杭州师范学院
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Abstract  The dissolution and deposition of stainless steel electrode under non-symmetrical square wave electric field were investigated by using atomic absorption spectroscopy (AAS) and electrochemical measurement.The effects of the parameters of alternating electric field on the growth of passive film and the dissolution of alloying element in stainless steel were studied by analysis of the composition of passive film and the bath solution.Result shows that the parameters of alternating electric field have marked effect on the electrochemical behavior of stainless steel,and the role of alloying element in stainless steel is different in the dissolution and deposition process.
Key words:  stainless steel      dissolve- deposition      AAS      Alternating Electric Field      
Received:  07 April 2005     
ZTFLH:  TG178  
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;. Investigation on the Dissolve and Deposition on Stainless Steel Electrode under Alternating Electric Field by Atomic Absorption Spectroscopy. J Chin Soc Corr Pro, 2006, 26(4): 241-244 .

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https://www.jcscp.org/EN/     OR     https://www.jcscp.org/EN/Y2006/V26/I4/241

[1]Chin D T,Venkatesh S.A study of alternating voltage modulationon the polarization of mild steel[J].J.Electrochem.Soc.,1979,126:1908-1913
[2]Tan T C,Chin D T.Effect of alternating voltage on the pitting ofaluminum in nitrate,sulfate and chloride solutions[J].Corrosion,1989,45:984-989
[3]Chang X Y,Wang X,Cao C N,et al.The investigation of stability ofpassive film improved by using A.V.passivation[A].Annual Reportof Opening Laboratory for Corrosion Science[C].Shenyang:Insti-tute of Corrosion and Protection,The Chinese Academy of Sciences,1988,217-219(常晓元,王旭,曹楚南等.载波钝化改进钝化膜稳定性研究[A].腐蚀科学开放实验室年报[C].沈阳:中国科学院腐蚀与防护研究所,1988,217-219)
[4]Song G L,Cao C N,Lin H C.On the transpassivation-repassiva-tion of type 304 stainless steel in high potential range[J].J.Chin.Soc.Corros.Prot.,1994,14:208-216(宋光铃,曹楚南,林海潮.不锈钢过钝化-二次钝化的研究[J].中国腐蚀与防护学报,1994,14:208-216)
[5]Song G L,Cao C N,Lin H C,et al.Effects of passivation of potentialand post-treatment on composition of surface film formed on steel304 and its stability[J].Acta Metall.Sin.,1992,28:368-374(宋光铃,曹楚南,林海潮等.电位及后处理对304不锈钢表面膜组成及其稳定性的影响[J].金属学报,1992,28:368-374)
[6]Zhang J X,Qiao Y N,Cao C N,et al.Semiconducting properties ofpassive film formed on stainless steel by using A.V.passivation[J].Acta Chim.Sinica,2002,60:30-36(张俊喜,乔亦男,曹楚南等.不锈钢载波钝化膜的半导体性质[J].化学学报,2002,60:30-36)
[7]Zhang J X,Yan L C,Qiao Y N,et al.Formation of passive film on304 stainless steel under alternating voltage electric field[J].ActaMetall.Sin.,2004,40:404-410(张俊喜,颜立成,乔亦男等.不锈钢载波钝化膜的生长过程[J],金属学报,2004,40:404-410)
[8]Legranda M,Diawara B,Legendrea J J,et al.Three-dimensionalmodeling of selective dissolution and passivation of iron-chromiumalloys[J].Corros.Sci.,2002,44:773-790
[9]Zhang J X,Chen J,Qiao Y N,et al.The growth mechanism of thecolored passive film formed on stainless steel 304 in sulfuric solutionwithout Cr6+ion by using A.V.passivation[J].Transactions of theInstitute of Metal Finishing,1999,77:106-107
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