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Degradation of ferritic stainless steels at 1200 degrees C in air

机译:在空气中1200摄氏度的铁素体不锈钢的降解

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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.
机译:通过空气中的热量分析仪(TGA)在1200摄氏度下进行三种商用铁素体不锈钢。铁素体不锈钢的氧化动力学显着不同。 CR2O3刻度的粘附性,SiO2的形态,有或没有(Cr,Mn)(3)O-4尖晶石在顶部可以大大影响钢的氧化和降解行为。虽然SUS430钢在铁素体不锈钢中的CR较少(16.2重量%CR)中,但它没有比B443NT钢(21.0wt%Cr)更低的降解行为。 B443NT钢上的保护氧化物刻度的介体是由SiO 2颗粒在氧化物氧化物在氧化过程中氧化物尺度内的缩小/衬底界面处的空位凝结引起的。 (Cr,Mn)(3)O-4尖晶石在B445J1M钢的CR2O3刻度顶部影响其蒸发速率。还讨论了Fe-CR-O系统的化学成分和氧化气氛的热力学方面。

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