Degradation of ferritic stainless steels at 1200 degrees C in air

作者:Cheng X W*; Jiang Z Y*; Monaghan B J; Longbottom R J; Wei D B; Hee A C; Jiang L Z
来源:Materials and Corrosion-Werkstoffe und Korrosion, 2018, 69(1): 63-75.
DOI:10.1002/maco.201709577

摘要

Three commercial ferritic stainless steels were investigated at 1200 degrees C by a thermogravimetric analyser (TGA) in air. The oxidation kinetics of the ferritic stainless steels differed significantly. The adhesion of the Cr2O3 scale, the morphology of the SiO2, with or without (Cr, Mn)(3)O-4 spinel on the top can greatly influence the oxidation and the degradation behaviour of the steels. Although the SUS430 steel had less Cr among the ferritic stainless steels (16.2 wt% Cr), it did not show more degradation behaviour than the B443NT steel (21.0 wt% Cr). The spallation of the protective oxide scale on the B443NT steel was caused by vacancy condensation at the scale/substrate interface where the SiO2 particles were and the developed compressive stresses within the oxide scale during oxidation. (Cr, Mn)(3)O-4 spinel on the top of the Cr2O3 scale on the B445J1M steel influenced its evaporation rate. The thermodynamic aspect of the chemical composition and oxidation atmosphere of the Fe-Cr-O system was also discussed.

  • 出版日期2018-1