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Steam Oxidation of Austenitic Heat-Resistant Steels TP347H and TP347HFG at 650–800 °C

机译:650–800°C下奥氏体耐热钢TP347H和TP347HFG的蒸汽氧化

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摘要

Steam oxidation of austenitic heat-resistant steels TP347H and TP347HFG at 650–800 °C was investigated. Comprehensive micro-characterization technologies containing Scanning Electron Microscope (SEM), Energy Dispersive X-ray Spectroscopy (EDS), X-ray Diffraction (XRD), and X-ray Photoelectron Spectroscopy (XPS) were employed to observe and analyze the oxidation products. Results show that breakaway oxidation behaviors were observed on TP347H at 700 °C and 800 °C. The oxidation kinetics of TP347HFG at 650–800 °C followed a parabolic law. The oxide scales formed on TP347HFG were composed of MnCr2O4 and Cr2O3. A thin and protective Cr-rich oxide scale was replaced by Fe2O3 nodules due to the insufficient outward migration of metallic ions, including Cr and Mn at the subsurface of coarse-grain TP347H. Smaller grain of TP347HFG promoted the formation of the compact Cr-rich oxide scales. At higher temperatures, the incubation period for breakaway oxidation of the Cr-rich oxide scale was much shorter because of quick evaporation of the Cr2O3 oxide scale and the slower outward diffusion of metallic ions via the grain boundaries.
机译:研究了奥氏体耐热钢TP347H和TP347HFG在650–800°C下的蒸汽氧化。包括扫描电子显微镜(SEM),能量色散X射线能谱(EDS),X射线衍射(XRD)和X射线光电子能谱(XPS)在内的综合微特征技术可用于观察和分析氧化产物。结果表明,TP347H在700°C和800°C时观察到断裂氧化行为。 TP347HFG在650–800°C下的氧化动力学遵循抛物线定律。 TP347HFG上形成的氧化皮由MnCr2O4和Cr2O3组成。由于金属离子(包括Cr和Mn在粗晶粒TP347H的次表面处)的向外迁移不足,Fe2O3结核代替了一层薄而具保护性的富Cr氧化物垢。 TP347HFG的晶粒较小促进了致密的富铬氧化物鳞片的形成。在较高的温度下,富Cr氧化物垢的分解氧化的孵育期要短得多,这是因为Cr2O3氧化物垢的快速蒸发和金属离子通过晶界向外扩散的速度较慢。

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