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Role of M_(23)C_6 carbide on the corrosion characteristics of modified 9Cr-1Mo steel in N_2-O_2-CO_2-SO_2 atmosphere at 650 °C

机译:M_(23)C_6碳化物在650°C的N_2-O_2-CO_2-SO_2气氛中改性9CR-1MO钢的腐蚀特性

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摘要

In this study, the oxidation and sulfidation characteristics of modified 9Cr-1Mo steels according to Cr-rich M23C6 distributed in grain boundaries in the N-2-O-2-CO2-SO2 atmosphere at 650 degrees C were analyzed. The oxidation kinetic was obeyed by the parabolic law. The oxide layer presented a three-layer structure consisting of hematite, magnetite, and Fe-Cr spinel from the outside. In the initial oxidation stage, Cr-rich M23C6 exposed to the surface acted as nuclei of Cr-rich oxide. However, it is thought to hardly effect on the growth of the outer oxide layer. The Cr-rich M23C6 distributed in grain boundaries preferentially formed a Cr2O3 layer at the oxide/matrix interface, and internal oxidation characteristics were shown to be different depending on the presence or absence of SO2 in the atmosphere.
机译:在该研究中,分析了根据在650℃的N-2-O-2-CO2-SO2气氛中分布于晶界中的Cr的M23C6的改性9Cr-1Mo钢的氧化和硫化特性。 抛物线法遵守氧化动力学。 氧化物层呈现由外部赤铁矿,磁铁矿和Fe-Cr尖晶石组成的三层结构。 在初始氧化阶段,暴露于表面的Cr的M23C6作用为富铬的氧化物核。 然而,据认为几乎没有影响外氧化物层的生长。 在氧化物/基质界面的晶界中分布的Cr的M23C6分布在氧化物/基质界面处,并且根据大气中的SO 2的存在或不存在,显示内部氧化特性。

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