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Acta Metall Sin  2013, Vol. 49 Issue (3): 265-270    DOI: 10.3724/SP.J.1037.2012.00616
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CORROSION AND PASSIVE PROPERTIES OF BULKULTRAFINE-GRAINED 304L STAINLESS STEEL
HAN Xiao1, CHEN Ji1, SUN Cheng2, WU Zhanwen1, WU Xinchun1, ZHANG Xinghang2
1) Center of Corrosion and Protection Technology in Petro-Chemical Industry, Department of Mechanical Engineering,,LiaoningShihua University, Fushun 113001
2) Department of Mechanical Engineering, Texas A&M University, College station, TX 77843-3123, USA
Cite this article: 

HAN Xiao, CHEN Ji, SUN Cheng, WU Zhanwen, WU Xinchun, ZHANG Xinghang. CORROSION AND PASSIVE PROPERTIES OF BULKULTRAFINE-GRAINED 304L STAINLESS STEEL. Acta Metall Sin, 2013, 49(3): 265-270.

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Abstract  

 Samples of ultrafine-grained 304L stainless steel with an average grain size of (130±30) nm wereprepared by using equal channel angular pressing (ECAP) technique after 6 passes with route Bc at 500 ℃.The electrochemical behaviors and the passive properties of the material in 0.05 mol/L H2SO4+0.25 mol/L Na2SO4solution were examined by using polarization curves and Mott-Schottky analysis. As compared with the coarse-grained counterpart, the ultrafine-grained 304L stainless steel sample exhibits a lower corrosion potential(-505 mV) and a higher corrosion current density (11.7μA/cm2), indicating the accelerated trend of the activedissolution, and has a broadening of passive region (-341-847 mV) with lower passive potential (-341 mV) andpassivation current density (4.5μA/cm2). Both of the passive films exhibit n-type semi-conductor behaviorsat potentials ranging from 0 to 0.7 V. The ultrafine grains of 304L stainless steel are helpful in forming more stablepassive films with the reduced donor density and the diffusion coefficient of the charge carrier.

Key words:  304L stainless steel      ultrafinegrain      corrosionresistance      passivation      equal channel angularpressing (ECAP)     
Received:  17 October 2012     

URL: 

https://www.ams.org.cn/EN/10.3724/SP.J.1037.2012.00616     OR     https://www.ams.org.cn/EN/Y2013/V49/I3/265

[1] Valiev R Z, Islamgaliev P K, Alexandrov I V.Prog Mater Sci, 2000; 45: 103


[2] Gleiter H.Acta Mater, 2000; 48: 1

[3] Chen J, Lu L, Lu K.Scr Mater, 2006; 54: 1913

[4] Liu L, Li Y, Wang F H.J Mater SciTechnol, 2010; 26: 1

[5] Peng X, Yan J, Zhou Y,Wang F H.Acta Mater, 2005; 53: 5079

[6] Ye W, Li Y, Wang F H.ElectrochimActa, 2009; 54: 1339

[7] Li N, Li Y, Wang S G, Wang F H.ElectrochimActa, 2006; 52: 760

[8] Liu L, Li Y, Wang F H.ElectrochimActa, 2010; 55: 2430

[9] Ye W, Li Y, Wang F H.ElectrochimActa, 2006; 51: 4426

[10] Zhang Y C, Macdonald D D, Macdonald M U, Engelhardt G R, Dooley R B.CorrosSci, 2006; 48: 3812

[11] Liu L, Li Y, Wang F H.ElectrochimActa, 2008; 54: 768

[12] Meng G Z, Li Y, Wang F H.ElectrochimActa, 2006; 51: 4277

[13] Fattah A A, Saatchi A, Golozar M A, Raeissi K.J ApplElectrochem, 2010; 40: 457

[14] Nicic I, Macdonald D D.J Nucl Mater, 2008; 379: 54

[15] Kiyotaka N, Zenji H, Minoru N, Terence G L.Mater SciEng, 2000; A280: 82

[16] Pan C, Liu L, Li Y, Wang S G, Wang F H.ElectrochimActa, 2011; 56: 7740

[17] Dewald J F.J PhysChem Solids, 1960; 14: 155

[18] Buchler M, Schmuki P, Buhui H.ElectrochimActa, 1997; 43: 635

[19] Sikora J, Sikora E, Macdonald D D.ElectrochimActa, 2000; 45: 1875

[20] Schmuki P, Bohni H.ElectrochimActa, 1995; 40: 775

[21] Chao C Y, Lin L F, MacDonald D D.J ElectrochemSoc, 1981; 128: 1187

[22] Lin L F, Chao C Y, MacDonald D D.J ElectrochemSoc, 1981; 128: 1194

[23] Chao C Y, Lin L F, MacDonald D D.J ElectrochemSoc, 1982; 129: 1874

[24] Sikora E, Sikora J, MacDonald D D.ElectrochimActa, 1996; 41: 783

[25] Guo H X, Lu B T, Luo J L.ElectrochimActa, 2006; 52: 1108
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