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The Morphology and Microstructure of Oxide Scale Grown on Austenitic Steel during Steam Oxidation at 700 °C for 500 h

机译:700℃蒸汽氧化期间奥氏体钢在奥氏体钢上生长的形态和微观结构500小时

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摘要

The modern power generation industry needs materials able to withstand severe conditions, such as high temperatures, steam pressure, and an aggressive environment, to create more electric power out of a decreasing amount of fuel. Therefore, new metallic materials are continuously being developed. In order to gain knowledge about modern materials, the investigation of high Cr and Ni austenitic steel oxidized in 100% steam at 700 °C for 500 h was performed. The morphology, the phase composition, and the chemical composition of the oxidation products were investigated through methods of advanced electron microscopy techniques. Moreover, precipitates present in bulk material were identified. The material developed a continuous and complex oxide scale, consisting of Fe2O3, Cr2O3, and spinel phases. Very fine MX, fine ε-Cu, and M23C6 precipitates were found in the bulk material. The creation of iron oxide is induced due to the coarse grain size of the material. Cr2O3 forms due to the internal oxidation process.
机译:现代发电行业需要能够承受严重条件的材料,如高温,蒸汽压力和侵蚀性环境,以产生更多的电力从燃料量下降。因此,持续开发出新的金属材料。为了获得关于现代材料的知识,进行在100%蒸汽下在700℃下氧化高Cr和Ni奥氏体钢500小时的研究。通过先进的电子显微镜技术研究了氧化产物的形态学,相组合物和化学成分。此外,鉴定了本体材料中存在的沉淀物。该材料开发了连续且复杂的氧化物尺度,由Fe 2 O 3,Cr 2 O 3和尖晶石相组成。在散装材料中发现非常细的MX,细ε-Cu和M23C6沉淀物。由于材料的粗粒尺寸,诱导氧化铁的产生。由于内部氧化过程,CR2O3形式。

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