[1]
G.C. Wood and F.H. Stott: in Proc. Int. Conf. on High Temperature Corrosion NACE-6, 2-6 March, 1981, San Diego, California, USA (1983), pp.227-250.
Google Scholar
[2]
B.A. Pint: Oxid. Met. Vol. 45 [1/2] (1996), p.1.
Google Scholar
[3]
M.C. Stasik, F.S. Pettit and G.H. Meier: Scripta Metall. Mater. Vol. 31.
Google Scholar
[4]
J. Klöwer, A. Kolb-Telieps and M. Brede: in Proc. Int. Conf. On Metal Supported Automotive Catalytic Converters, (H. Bode edt. ), Werkstoff-Informationsgesselschaft mbH, Frankfurt, ISBN 3-88355-254-2 (1997), pp.33-46.
Google Scholar
[5]
H. Al-Badairy, G. J. Tatlock and H.E. Evans: Proc. int. workshop on Lifetime modelling of high temperature corrosion process (M. Schütze, W.J. Quadakkers and J.R. Nicholls, edt. ), Publication No. 34 in European Federation of Corrosion Series, The Institute of Materials, London (2001).
Google Scholar
[6]
W.J. Quadakkers, A. Elschner and H. Holzbrecher: Microchimica Acta Vol. 107 (1992), p.197.
Google Scholar
[7]
D. Naumenko, W. J. Quadakkers and V. Guttmann: Proc. int. workshop on Lifetime modelling of high temperature corrosion process (M. Schütze, W.J. Quadakkers and J.R. Nicholls, edt. ), Publication No. 34 in European Federation of Corrosion Series, The Institute of Materials, London (2001).
DOI: 10.1002/maco.201770024
Google Scholar
[8]
D. Naumenko, J. Le-Coze and E. Wessel: Mater. Trans. Vol. 43.
Google Scholar
[9]
W.H. Tuan, R.Z. Chenand T.C. Wang: J. Eur. Ceram. Soc. Vol. 22 (2002), p.2827.
Google Scholar
[10]
W.J. Quadakkers, D. Naumenko and L. Singheiser: Mater. Corros. Vol. 51 (2000), p.350.
Google Scholar
[11]
V.K. Tolpygo and D.R. Clarke: Mat. Sci. Eng. Vol. A278 (2000), p.142.
Google Scholar