Temperature and gas composition dependence of internal oxidation kinetics of an Fe10%Cr alloy in water vapour containing environments
J. Żurek, G. H. Meier, E. Wessel, L. Singheiser, W. J. Quadakkers
Abstract
J. Żurek, G. H. Meier, E. Wessel, L. Singheiser, W. J. Quadakkers
Abstract
Abstract Recently it was proposed, that the hampered formation of external protective chromia scales on FeCr‐alloys in water vapour containing, low‐pO 2 gases is correlated with enhanced internal oxidation of chromium. In the present study the internal oxidation kinetics of Fe10Cr (in mass%) during isothermal oxidation in ArH 2 H 2 O mixtures at temperatures in the range 800–1050 °C has been investigated. It was found that the tendency for Cr to become internally oxidized decreased with decreasing temperature. At the higher test temperatures the internal oxide precipitates consisted of Fe/Cr‐spinel. With decreasing temperature the precipitates near the oxidation front gradually exhibited increasing amounts of chromia. At 900 °C the oxidation morphology in the ArH 2 base gas mixture changed from exclusive internal oxidation of Cr at a water vapour content of 2% towards a combined internal Cr oxidation and external Fe‐oxide formation at higher water vapour partial pressures.
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Abstract Recently it was proposed, that the hampered formation of external protective chromia scales on FeCr‐alloys in water vapour containing, low‐pO 2 gases is correlated with enhanced internal oxidation of chromium. In the present study the internal oxidation kinetics of Fe10Cr (in mass%) during isothermal oxidation in ArH 2 H 2 O mixtures at temperatures in the range 800–1050 °C has been investigated. It was found that the tendency for Cr to become internally oxidized decreased with decreasing temperature. At the higher test temperatures the internal oxide precipitates consisted of Fe/Cr‐spinel. With decreasing temperature the precipitates near the oxidation front gradually exhibited increasing amounts of chromia. At 900 °C the oxidation morphology in the ArH 2 base gas mixture changed from exclusive internal oxidation of Cr at a water vapour content of 2% towards a combined internal Cr oxidation and external Fe‐oxide formation at higher water vapour partial pressures.
Key concepts: Chromia, Internal oxidation, Isothermal process, Water vapor, Spinel, Oxide, Alloy, Chromium