Коррозия сплава 10ХН45Ю в условиях окислительной газовой атмосферы
- Авторы: Карфидов Э.А.1, Селиверстов К.Е.1, Филиппов И.Д.1, Никитина Е.В.1, Дедюхин А.Е.1, Зайков Ю.П.1
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Учреждения:
- Институт высокотемпературной электрохимии УрО РАН
- Выпуск: № 3 (2025)
- Страницы: 237-249
- Раздел: Статьи
- URL: https://ogarev-online.ru/0235-0106/article/view/308109
- DOI: https://doi.org/10.31857/S0235010625030052
- ID: 308109
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Э. А. Карфидов
Институт высокотемпературной электрохимии УрО РАНЕкатеринбург, Россия
К. Е. Селиверстов
Институт высокотемпературной электрохимии УрО РАНЕкатеринбург, Россия
И. Д. Филиппов
Институт высокотемпературной электрохимии УрО РАНЕкатеринбург, Россия
Е. В. Никитина
Институт высокотемпературной электрохимии УрО РАНЕкатеринбург, Россия
А. Е. Дедюхин
Институт высокотемпературной электрохимии УрО РАН
Email: dedyukhin@ihte.ru
Екатеринбург, Россия
Ю. П. Зайков
Институт высокотемпературной электрохимии УрО РАНЕкатеринбург, Россия
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- Henry S., Mougin J., Wouters Y., Petit J-P., Galerie A. Characterization of chromia scales grown on pure chromium in different oxidizing atmospheres // Materials at High Temperatures. 2000.17. P.231–234.
- Hultquist G., Tveten B., HoЁrnlund E. Hydrogen in chromium: influence on the high-temperature oxidation kinetics in H2O, oxide-growth mechanisms, and scale adherence //Oxidation of Metals. 2000.54. P.1–10.
- Ehlers J., Young D.J., Smaardijk E.J., Tyagi A.K., Penkalla H.J., Singheiser L. et al. Enhanced oxidation of the 9% Cr steel P91 in water vapour containing environments //Corrosion Science.2006.48.P.3428–3454.
- Schutze M., Renusch D., Schorr M. Chemical–mechanical failure of oxide scales on 9% Cr steels in air with H2O //Materials at High Temperatures. 2005.22. P. 113–120.
- Galerie A., Henry S., Wouters Y., Mermoux M., Petit J-P., Antoni L. Mechanisms of chromia scale failure during the course of 15–18Cr ferritic stainless steel oxidation in water vapour //Materials at High Temperatures. 2005.22. P. 105–12.
- Zґurek J., Michalik M., Schmitz F., Kern T-U., Singheiser L., Quadakkers W.J. The effect of water-vapor content and gas flow rate on the oxidation mechanism of a 10%Cr–ferritic steel in Ar–H2O mixtures //Oxidation of Metals. 2005.63. P. 401–422.
- Cheng S-Y., Kuan S-L., Tsai W-T. Effect of water vapor on annealing scale formation on 316 SS //Corrosion Science. 2006.48. P. 634–649.
- Peng X., Yan J., Zhou Y., Wang F. Effect of grain refinement on the resistance of 304 stainless steel to breakaway oxidation in wet air //Acta materialia. 2005.53.P.5079–5088.
- Shen J., Zhou L., Li T. High-temperature oxidation of Fe–Cr alloys in wet oxygen //Oxidation of Metals.1997.48.P.347–356.
- Ehlers J., Young D.J., Smaardijk E.J., Tyagi A.K., Penkalla H.J., Singheiser L. et al. Enhanced oxidation of the 9% Cr steel P91 in water vapour containing environments //Corrosion Science. 2006.48.P.3428–3454.
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- Hussain N., Qureshi A.H., Shahid K.A., Chughtai N.A., Khalid F.A. High-temperature oxidation behavior of HASTELLOY C-4 in steam //Oxidation of Metals. 2004.61.P.355–364.
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- Holcomb G.R., Alman D.E. The effect of manganese additions on the reactive evaporation of chromium in Ni–Cr alloys //Scripta materialia.2006.54.Р.1821–1825.
- Zhou C., Yu J., Gong S., Xu H. Influence of water vapor on the isothermal oxidation behavior of low pressure plasma sprayed NiCrAlY coating at high temperature //Surface and Coatings Technology. 2002.161.P.86–91.
- Poquillon D.,Monceau D. Application of a Simple Statistical Spalling Model for the Analysis of High-Temperature //Cyclic-Oxidation Kinetics Data.2003.59.P.409–431.
- Vialas N.,Monceau D.,Pieraggi B.Effect of Cycle Frequency on High Temperature Oxidation Behavior of Alumina-forming Coatings Used for Industrial Gas Turbine Blades //Materials Science Forum.2004.461.464. P. 747–754.
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