[1]
C. Desgranges, F. Mazaudier , D. Gauvain, A. Terlain, D. Féron and G. Santarini: Proceeding of The International Workshop Prediction of long term corrosion behaviour in nuclear waste systems, 26-29 November 2001, Cadarache (France), (European Federation of Corrosion Publications Number 36., 2003 ), p.49.
Google Scholar
[2]
C. Wagner: Corros. Sci. Vol. 9 (1969), p.91.
Google Scholar
[3]
N. Cabrera and N. F Mott: Rep. Prog. Phys Vol. 12 (1948-49), p.163.
Google Scholar
[4]
A.T. Fromhold: Theory of metal oxidation, Vol. II, (North Holland Publishing, Amsterdam 1990).
Google Scholar
[5]
C. Desgranges, A. Abbas and A. Terlain: Proceeding of The International Workshop Prediction of long term corrosion behaviour in nuclear waste systems, 26-29 November 2001, Cadarache (France), (European Federation of Corrosion Publications Number 36., 2003), p.194.
Google Scholar
[6]
S. Larose and B. Rapp: Review of low-temperature oxidation of carbon steels and low-alloy steels for use as high-level radioactive waste package materials, (Report CNWRA97-003, Center for Nuclear Waste Regulatory Analyses, San Antonio, Tx, February 1997).
Google Scholar
[7]
A. Terlain et al.: CORROSION 01, paper N°0119, Nace International, Houston, Tx, (2001).
Google Scholar
[8]
W.W. Smeltzer: Advances in phase transformations (Pergamon Press, Oxford, 1987), p.131.
Google Scholar
[9]
B.D. Bastow, D. Whittle and G.C. Wood: Proc. R. Soc. Lond. Vol. A 356 (1997), p.177.
Google Scholar
[10]
H. Umimoto et al.: IEE Transactions on Computer-aided Design Vol. 8 (1989), p.599.
Google Scholar
[11]
A. Atkinson, R.I. Taylor and A.E. Hugues.: Philos. Mag. A Vol. 45 (1982), p.823.
Google Scholar
[12]
J.A. Nesbitt: Oxid. Met. Vol. 44 (1995), p.309.
Google Scholar
[13]
T.J. Nidjman, L.P.H. Jeurgens and W.G. Sloof: Acta Mater. Vol. 51 (2003), p.5295.
Google Scholar
[14]
D. Monceau, C. Petot and G. Petot-Gevras: Solid State Ionics Vol. 45 (1991), p.231.
DOI: 10.1016/0167-2738(91)90156-6
Google Scholar
[15]
F. Gesmundo and P.Y. Hou: Oxid. Met. Vol. 59 (2003), p.63.
Google Scholar
[16]
B. Pieraggi et al.: Oxid. Met. Vol. 44 (1995), p.63.
Google Scholar
[17]
D. Monceau and D. Poquillion: in Oxydation des matériaux métalliques (Eds AM HuntzAubriot and B Pieraggi, hermes science publication, Lavoisier, Paris, 2003), p.165.
Google Scholar
[18]
D. Caplan, M.J. Graham, and M. Cohen: Corros. Sci. Vol. 10 (1970), p.1.
Google Scholar
[19]
D. L Carpenter and A. C Ray: Corros. Sci. Vol. 13 (1973), p.493.
Google Scholar
[20]
R. Francis and D.G. Lees: Mat. Sci. Eng. Vol. A120 (1989), p.97.
Google Scholar
[21]
S. Perusin, B. Viguier, D. Monceau and E. Andrieu: this issue.
Google Scholar
[22]
G. Martin and C. Desgranges: Europhys. Lett. Vol. 44 (1998), p.150.
Google Scholar
[23]
C. Desgranges: PhD Thesis, Université Paris-Sud, also published as report CEA-R-5805 or DE99619878, CEA -Saclay, Gif-sur-Yvette (France) (1998).
Google Scholar
[24]
M. Martin and E. Fromm: J. Alloy Compd. Vol. 258 (1997), p.7.
Google Scholar
[25]
E. Fromm: Kinetics of metal-gas interactions at low temperature (Springer Series in Surface Sciences 1998).
Google Scholar
[26]
T. Narita et al.: J. Electrochem. Soc., Solid State Science and Techn. Vol. 1 (1982), p.209.
Google Scholar