Consideration of the formation of solids and gases in steady state modelling of crevice corrosion propagation
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[1] Digby D. Macdonald,et al. Prediction of Long Term Corrosion Behaviour in Nuclear Waste Systems , 2006 .
[2] R. Evitts,et al. Effect of Ionic Interactions on the Initiation of Crevice Corrosion in Passive Metals , 2005 .
[3] K. Weil,et al. Measurement of pH Gradients in the Crevice Corrosion of Iron Using a Palladium Hydride Microelectrode , 2005 .
[4] R. Evitts,et al. Effect of the Crevice Gap on the Initiation of Crevice Corrosion in Passive Metals , 2004 .
[5] H. Pickering. Important Early Developments and Current Understanding of the IR Mechanism of Localized Corrosion , 2003 .
[6] J. N. Al-Khamis,et al. IR Mechanism of Crevice Corrosion for Alloy T-2205 Duplex Stainless Steel in Acidic-Chloride Media , 2001 .
[7] N. Laycock,et al. Computer Simulation of Single Pit Propagation in Stainless Steel under Potentiostatic Control , 2001 .
[8] Yong-Soo Park,et al. Initiation modeling of crevice corrosion in 316L stainless steels , 2000 .
[9] S. Joiret,et al. Raman investigation of crevice corrosion in nickel-chromium dental alloys containing beryllium , 1998 .
[10] R. Newman,et al. Localised dissolution kinetics, salt films and pitting potentials , 1997 .
[11] J. Walton,et al. A numerical model of crevice corrosion for passive and active metals , 1996 .
[12] N. Sato. The stability of localized corrosion , 1995 .
[13] J. Castle,et al. The initiation of pitting corrosion at MnS inclusions , 1993 .
[14] S. Sharland. A mathematical model of the initiation of crevice corrosion in metals , 1992 .
[15] J. Postlethwaite,et al. NUMERICAL SIMULATION OF CREVICE CORROSION OF STAINLESS STEELS AND NICKEL ALLOYS IN CHLORIDE SOLUTIONS , 1990 .
[16] J. Walton. Mathematical modeling of mass transport and chemical reaction in crevice and pitting corrosion , 1990 .
[17] S. M. Sharland,et al. A finite-element model of the propagation of corrosion crevices and pits , 1989 .
[18] S. Sharland. A mathematical model of crevice and pitting corrosion. II: the mathematical solution , 1988 .
[19] S. Sharland,et al. A mathematical model of crevice and pitting corrosion—I. The physical model , 1988 .
[20] R. Cottis,et al. THE DETERMINATION OF pH, POTENTIAL AND CHLORIDE CONCENTRATION IN CORRODING CREVICES ON 304 STAINLESS STEEL AND 7475 ALUMINIUM ALLOY , 1987 .
[21] T. Okada,et al. Halide Nuclei Theory of Pit Initiation in Passive Metals , 1984 .
[22] A. Turnbull,et al. A Model of Crack Electrochemistry for Steels in the Active State Based on Mass Transport by Diffusion and Ion Migration , 1982 .
[23] A. Turnbull,et al. Electrochemical polarization studies of BS 4360 50D steel in 3.5% NaCl , 1982 .
[24] Z. Takehara,et al. The enrichment of hydrogen and chloride ions in the crevice corrosion of steels , 1981 .
[25] J. Galvele. Transport processes in passivity breakdown—II. Full hydrolysis of the metal ions , 1981 .
[26] J. W. Oldfield,et al. Crevice Corrosion of Stainless Steels: I. A Mathematical Model , 1978 .
[27] B. Titze,et al. Pitting potentials and inhibition potentials of iron and nickel for different aggressive and inhibiting anions , 1977 .
[28] J. Galvele,et al. Transport Processes and the Mechanism of Pitting of Metals , 1976 .