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◆ Corrosion Science2026-03-11· Isothermal process

Effect of thermal cycling and phase transformations on chemical life of ferritic stainless steels

A. Chyrkin, D. Naumenko, Mirko Ziegner, E. Wessel, Mohammad Sattari, Jan Froitzheim

原始摘要(英文原文)· Original abstract
Thin foils (0.3 mm thick) of ferritic stainless steels Crofer 22 APU and Crofer 22 H typically used for SOFC/SOEC applications were isothermally and discontinuously oxidized in air for up to 1000 h at 1000 °C. Both steel grades suffered from breakaway oxidation, Crofer 22 APU failing faster (70 h) than Crofer 22 H (700 h). Counterintuitively, isothermal exposure of Crofer 22 APU resulted in a more severe corrosion attack compared to discontinuous exposures with intermediate cooling steps. In contrast, Crofer 22 H was not affected by the thermal history of exposure. Breakaway oxidation of both steel grades is related to the α-to-γ transformation occurring above 900 °C. Crofer 22 H is less susceptible to austenitization. • Thin foils of Crofer 22 APU and Crofer 22 H suffer from premature breakaway oxidation at 900-1000 °C. • Crofer 22 APU is more susceptible to premature breakaway compared to Crofer 22 H. • Alloying with ferrite stabilizers such as W, Nb, Si, etc. prevents or postpones premature breakaway at 900-1000 °C. • Martensite was detected in the Crofer 22 APU foils after oxidation at 1000 °C but not in Crofer 22 H. • Austenitization is the main trigger of premature breakaway oxidation • A novel lifetime model accounting for austenitization and geometrical constraints is proposed and validated.
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Effect of thermal cycling and phase transformations on chemical life of ferritic stainless steels — 科研速览 Science Skim