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Thermodynamic and Kinetic Analysis for Transformation of Oxide Inclusions in Solid 304 Stainless Steels

机译:固体304不锈钢氧化物夹杂物转化的热力学和动力学分析

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摘要

Inclusions in 304 stainless steels are transformed from manganese silicate to manganese chromite (spinel) upon heating in the range of 1000-1350 degrees C, while this transformation is not observed when heating temperature is 1400 degrees C. Thermodynamic analysis with software FactSage (TM) is applied in interpreting the transformation. Manganese chromite spinel, with light color under SEM, is deemed to be formed on the surface of MnO-SiO2 inclusions by the reaction between Cr in steel matrix and MnO-SiO2 in inclusions. Heating experiments with different time at 1235 degrees C (rolling insulation temperature) are carried out to confirm the kinetics of the transformation reaction. Mass transfer coefficients of inclusions' composition, SiO2, MnO, and Cr2O3 are ranging from 5 x 10(-7) to 9 x 10(-7) m s(-1), depending on diameters and components of inclusions.
机译:在1000-1350℃的加热范围内,304不锈钢中的夹杂物从锰硅酸盐转化为锰铬酸盐(尖晶石),而当加热温度为1400℃时,未观察到这种转化。使用软件静脉(TM)热力学分析 应用于解释转换。 在SEM下具有浅色的锰铬铁矿尖晶石被认为在MnO-SiO 2夹杂物的表面上通过钢基质和MnO-SiO 2的反应在夹杂物中形成。 进行1235摄氏度(滚动绝缘温度)的不同时间的加热实验,以确认转化反应的动力学。 夹杂物组合物,SiO 2,MNO和Cr2O3的质量传递系数从5×10(-7)至9×10(-7)m S(-1),取决于夹杂物的直径和组分。

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