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High Temperature Oxidation Behavior of New Martensitic Heat-Resistant Steel

机译:新马氏体耐热钢的高温氧化行为

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摘要

The research focuses on the high temperature oxidation resistance of martensitic heat-resistant steel. A new type of martensitic heat-resistant steel was developed with the addition of Al and Cu, and the oxidation behavior of the new martensitic heat-resistant steel at 650 °C and 700 °C was analyzed. The high temperature oxidation kinetics curves of new martensitic heat-resistant steel at 650 °C and 700 °C were determined and plotted by cyclic oxidation experiment and discontinuous weighing method. XRD technique was applied to qualitatively analyze the surface oxide of the material after oxidation. The surface and cross-section morphology of the material were observed by field emission scanning electron microscope (SEM) and energy dispersive spectrometer (EDS), and the oxidation mechanism at high temperature was analyzed. The results show that the oxide film can be divided into two layers after oxidation at 650 ºC for 200 h. The outer oxide film is mainly composed of Fe and Cu oxides, and the inner oxide film is mainly composed of Al2O3, SiO2 and Cr2O3. After oxidation at 700 ºC for 200 h, the outer layer is mainly composed of Fe, Cu, Mn oxides, and the inner layer is mainly composed of Cr, Al and Si oxides. The addition of a small amount of Cu promotes the diffusion of Al and Si elements, facilitates the formation of Al2O3 and SiO2, and improves the high-temperature oxidation resistance of martensitic heat-resistant steel.
机译:该研究侧重于马氏体耐热钢的高温抗氧化性。通过加入Al和Cu开发了一种新型的马氏体耐热钢,并分析了新的马氏体耐热钢在650℃和700℃下的氧化行为。在650℃和700℃下的新的马氏体耐热钢的高温氧化动力学曲线确定,并且通过循环氧化试验和不连续的称重方法作图。应用XRD技术以定性分析氧化后材料的表面氧化物。通过现场发射扫描电子显微镜(SEM)和能量分散光谱仪(EDS)观察材料的表面和横截面形态,分析了高温下的氧化机理。结果表明,氧化膜可以在650℃的氧化后分为两层200小时。外氧化物膜主要由Fe和Cu氧化物组成,内氧化物膜主要由Al2O3,SiO 2和Cr 2 O 3组成。在700ºC氧化200小时后,外层主要由Fe,Cu,Mn氧化物组成,内层主要由Cr,Al和Si氧化物组成。添加少量Cu促进Al和Si元素的扩散,便于形成Al 2 O 3和SiO 2,并提高马氏体耐热钢的高温抗氧化性。

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