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High-Temperature Oxidation Behavior of Fe–10Cr Steel under Different Atmospheres

机译:不同气氛下Fe-10Cr钢的高温氧化行为

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摘要

Using a thermogravimetric analyzer (TGA), Fe–10Cr steel was oxidized in dry air and in a mixed atmosphere of air and water vapor at a relative humidity of 50% and a temperature of 800–1200 °C for 1 h. The oxidation weight gain curves under the two atmospheres were drawn, the oxidation activation energy was calculated, and the phase and cross-sectional morphology of the iron oxide scales were analyzed and observed by X-ray diffractometry (XRD) and optical microscopy (OM). The results showed that when the oxidation temperature was 800 °C, the spheroidization of Fe–10Cr steel occurred, and the oxidation kinetics conformed to the linear law. At 900–1200 °C, the oxidation kinetics followed a linear law in the preliminary stage and a parabolic law in the middle and late stages. In an air atmosphere, when the oxidation temperature reached 1200 °C, Cr2O3 in the inner oxide layer was partially ruptured. In an atmosphere with a water vapor content of 50%, Cr2O3 at the interface reacted with H2O to generate volatile CrO2(OH)2, resulting in a large consumption of Cr at the interface. At the same time, a large number of voids and microcracks appeared in the iron oxide layer, which accelerated the entry of water molecules into the substrate, as well as the oxidation of Fe–10Cr steel, and caused the iron oxide scales to fall off. Due to the volatilization of Cr2O3 and the conversion from internal oxidation to external oxidation, the internal oxidation zone (IOZ) of Fe–10Cr steel under water vapor atmosphere decreased or even disappeared.
机译:使用热重分析仪(TGA),Fe-10CR钢在干燥空气中氧化,在空气和水蒸气的混合气氛中,在相对湿度下为50%和800-1200℃的温度1小时。绘制了两个大气下的氧化重量增益曲线,计算氧化活化能量,通过X射线衍射法(XRD)和光学显微镜(OM)分析并观察氧化铁鳞片的相位和横截面形态(OM) 。结果表明,当氧化温度为800℃时,发生Fe-10CR钢的球化,氧化动力学符合线性定律。在900-1200°C,氧化动力学在初步阶段和中期阶段中的抛物线法之后进行了线性法律。在空气气氛中,当氧化温度达到1200℃时,内氧化物层中的Cr2O3部分地破裂。在水蒸气含量为50%的气氛中,在界面处与H 2 O反应的Cr2O3产生挥发性CRO2(OH)2,导致界面处的CR的大量消耗。同时,大量的空隙和微裂纹的出现在铁氧化物层,这加速了水分子进入到衬底中,以及Fe基10CR钢的氧化,并造成了氧化铁鳞脱落。由于Cr2O3的挥发和从内部氧化转化为外氧化,水蒸气气氛下Fe-10Cr钢的内部氧化区(IOZ)降低或甚至消失。

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