Oxidation mechanism of an Fe–9Cr–1Mo steel by liquid Pb–Bi eutectic alloy at 470 °C (Part II)

作者: L. Martinelli , F. Balbaud-Célérier , A. Terlain , S. Bosonnet , G. Picard

DOI: 10.1016/J.CORSCI.2008.06.051

关键词: CorrosionOxideSpinelMaterials scienceMetallurgyMagnetiteEutectic systemMetalDiffusionLayer (electronics)

摘要: … This Fe–Cr spinel stoichiometry is Fe 2.4 Cr 0.6 O 4 which is the same as the one obtained in liquid Pb–Bi or in pure liquid bismuth in this study. The Fe–Cr spinel layer, composed of …

参考文章(33)
J TOPFER, S AGGARWAL, R DIECKMANN, Point defects and cation tracer diffusion in (CrxFe1 − x)3 − δO4 spinels Solid State Ionics. ,vol. 81, pp. 251- 266 ,(1995) , 10.1016/0167-2738(95)00190-H
J. Robertson, M. I. Manning, Criteria for formation of single layer, duplex, and breakaway scales on steels Materials Science and Technology. ,vol. 4, pp. 1064- 1071 ,(1988) , 10.1179/MST.1988.4.12.1064
Nicholas J. Cory, Thelma M. Herrington, Kinetics of oxidation of ferrous alloys by super-heated steam Oxidation of Metals. ,vol. 28, pp. 237- 258 ,(1987) , 10.1007/BF00666604
Nicholas J. Cory, Thelma Herrington, The location of hydrogen in the kinetics of oxidation of ferrous alloys by superheated steam Oxidation of Metals. ,vol. 29, pp. 135- 152 ,(1988) , 10.1007/BF00656353
L. Martinelli, F. Balbaud-Célérier, A. Terlain, S. Delpech, G. Santarini, J. Favergeon, G. Moulin, M. Tabarant, G. Picard, Oxidation mechanism of a Fe–9Cr–1Mo steel by liquid Pb–Bi eutectic alloy (Part I) Corrosion Science. ,vol. 50, pp. 2523- 2536 ,(2008) , 10.1016/J.CORSCI.2008.06.050
R.J. Hussey, M.J. Graham, Some observations on void formation in Fe3O4 layers on Fe Corrosion Science. ,vol. 21, pp. 255- 258 ,(1981) , 10.1016/0010-938X(81)90034-2
L. Tomlinson, N.J. Cory, Hydrogen emission during the steam oxidation of ferritic steels: Kinetics and mechanism Corrosion Science. ,vol. 29, pp. 939- 965 ,(1989) , 10.1016/0010-938X(89)90086-3
Toshio Maruyama, Naoya Fukagai, Mitsutoshi Ueda, Kenichi Kawamura, Chemical Potential Distribution and Void Formation in Magnetite Scale Formed in Oxidation of Iron at 823K Materials Science Forum. pp. 807- 814 ,(2004) , 10.4028/WWW.SCIENTIFIC.NET/MSF.461-464.807