Abstract
The aim of this study is to show the influence of the gaseous environment on the ferritic Fe-Cr-Si model alloy oxidation during 70 hrs, at 900 and 950°C. Two different atmospheres have been used, air or nitrogen containing 5 vol% hydrogen (N2–5%H2). After air oxidation, a nonadherent chromia scale formed. In the N2–5%H2 gaseous environment, it clearly appears that silicon segregation near the internal scale-metal interface is favoured. In this low oxygen-containing gas, adherent chromia, and silica scales have been formed. Silica subscale associated to an adherent chromia scale obtained in low-oxygen conditions are a good protection barrier against carburisation.
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Issartel, C., Buscail, H., & Mathieu, S. (2019). Influence of atmosphere on high-temperature oxidation of Fe-Cr-Si model alloy. Materials and Corrosion, 70(8), 1410–1415. https://doi.org/10.1002/maco.201810579
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