Skip to main content
Have a personal or library account? Click to login
Behaviour of creep-resistant steels in a transpassive zone Cover

Behaviour of creep-resistant steels in a transpassive zone

By:  and    
Open Access
|Aug 2012

References

  1. Vodárek, V. Fyzikální metalurgie modifikovaných ocelí (9-12)% Cr ocelí. Vysoká škola báňská - technická univerzita Ostrava, 2003.
  2. Svobodová, M., et al.In KOTLE A ENERGETICKÁ ZAŘÍZENÍ 2010, Brno, Czech republic; 2010.
  3. Jonšta, Z.; et al.; Vydavatelstvo ZUSI: Žilina, 2002.
  4. Bojinov, M.; Fabricius, G.; Laitinen, T.; Saario, T. Transpassivity mechanism of iron-chromium-molybdenum alloys studied by AC impedance, DC resistance and RRDE measurements.,(24), 4331-4343.
  5. Bojinov, M.; Betova, I.; Raicheff, R. Transpassivity of molybdenum in HSOsolution.,(1-2), 123-131.
  6. Armstrong, R. D.; Bell, M. F.; Metcalfe, A. A. The anodic dissolution of molybdenum in alkaline solutions - electrochemical measurements.,(1), 61-72.
  7. Betova, I.; Bojinov, M.; Laitinen, T.; Mäkelä, K.; Pohjanne, P.; Saario, T. The transpassive dissolution mechanism of highly alloyed stainless steels: II. Effect of pH and solution anion on the kinetics.,(12), 2699-2723.
  8. Hull, M. N. On the anodic dissolution of molybdenum in acidic and alkaline electrolytes.,(1), 143-157.
  9. Johnson, J. W.; Wu, C. L. The Anodic Dissolution of Tungsten.,(12), 1909-1912.
  10. Beck, F.; Kaus, R.; Oberst, M. Transpassive dissolution of iron to ferrate(VI) in concentrated alkali hydroxide solutions.,(2), 173-183.
  11. Fattah-alhosseini, A.; Saatchi, A.; Golozar, M. A.; Raeissi, K. The transpassive dissolution mechanism of 316L stainless steel.,(13), 3645-3650.
  12. Song, G., Transpassivation of Fe-Cr-Ni stainless steels.,(8), 1953-1987.
  13. Betova, I.; Bojinov, M.; Laitinen, T.; Mäkelä, K.; Pohjanne, P.; Saario, T. The transpassive dissolution mechanism of highly alloyed stainless steels: I. Experimental results and modelling procedure.,(12), 2675-2697.
  14. Bojinov, M.; Betova, I.; Fabricius, G.; Laitinen, T.; d, R. R.; Saario, T. The stability of the passive state of iron-chromium alloys in sulphuric acid solution.,(8), 1557-1584.
  15. Cubicciotti, D. Potential-pH diagrams for alloy-water systems under LWR conditions., 201, 176-183
  16. Maile, K. Evaluation of microstructural parameters in 9-12% Cr-steels.,(1-2), 62-68.
  17. Rapouch, J.; et al. Detekce strukturních změn ve vysoce legovaných žáropevných ocelích.,(4), 160-165.
  18. Rapouch, J.; Bystrianský, J.; Svobodová, M. Detection of structural changes in chromium martensitic steels using electrochemical methods. In, Brno, Czech republic; 2011.
DOI: https://doi.org/10.2478/v10227-011-0006-7 | Journal eISSN: 1804-1213 | Journal ISSN: 0452-599X
Language: English
Page range: 31 - 37
Published on: Aug 2, 2012
Published by: Association of Czech and Slovak Corrosion Engineers
In partnership with: Paradigm Publishing Services
Publication frequency: Volume open

© 2012 J. Rapouch, J. Bystrianský, published by Association of Czech and Slovak Corrosion Engineers
This work is licensed under the Creative Commons License.