[1]
Z. Liu, W. Gao, K. Dahm and Y. He: High Temp. Mats & Proc. Vol. 16.
Google Scholar
[3]
(1997), p.159.
Google Scholar
[2]
Z. Liu, W. Gao, K. Dahm and F. Wang, Scripta Materialia Vol. 37.
Google Scholar
[10]
(1997) p.1551.
Google Scholar
[3]
T.P. Levi, K.A. Lichti and A.J. Tack: Proc. Int. Symposium. on High-Temperature Corrosion and Protection, Hokkaido, Japan, 17-22 September (2000).
Google Scholar
[4]
V.C.A. Haanappel, T. Fransen and P.J. Gellings: High Temperature Materials and Processes Vol. 10 (1992), p.67.
Google Scholar
[5]
V.C.A. Haanappel, T. Fransen and P.J. Gellings: High Temperature Materials and Processes Vol. 10, (1992), p.91.
Google Scholar
[6]
P. Kofstad: High Temperature Corrosion Elsevier, New York (1988).
Google Scholar
[7]
V.C.A. Haanappel, N.W.J. Haanappel, T. Fransen, H.D. van Corbach and P.J. Gellings: Corrosion Science Vol. 48 (1992), p.812.
DOI: 10.5006/1.3315879
Google Scholar
[8]
A.S. Kim and M.J. McNallan, Corrosion, Vol. 46, (1990), p.746.
Google Scholar
[9]
S.Y. Lee and M.J. McNallan: J. Electrochemical Society Vol. 137 (1990), p.472.
Google Scholar
[10]
D. Bramhoff, H. J Grabke and H. P Schmidt: Werkstoffe und Korrosion Vol. 40, (1989), p.642.
Google Scholar
[11]
D. Bramhoff, H.J. Grabke, E. Reese and H. P Schmidt: Werkstoffe und Korrosion Vol. 41 (1990), p.303.
Google Scholar
[12]
E.M. Fryte, V.S. Bhyde, W.W. Smeltzer and J.S. Kirkaldy: J. Electrochemical Society Vol. 126 (1979), p.683.
Google Scholar
[13]
W. Kai, C. T Leu and P.Y. Lee: Oxidation of Metals Vol. 46 [3/4] (1996), p.185.
Google Scholar