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Steam Oxidation of Ferritic Heat-resistant Steels for Ultra Supercritical Boilers

机译:超超临界锅炉用铁素体耐热钢的蒸汽氧化

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Steam oxidation of heat-resistant steels is expected to be one of the major concerns for degradation of ultra supercritical (USC) boilers for an advanced power generation plant. This paper focuses on steam oxidation kinetics of newly developed heat resistant ferritic steels, which contain either 2.2 percent, 9 percent, or 11 percent Cr and about 2 percent W (HCM 2 S, NF 616, HCM 12 A). Oxidation rates of those steels were measured in a pressurized superheated steam as functions of temperature and pressure. Oxidation rate always showed parabolic nature. Effects of chemical composition and pressure showed interesting contrast depending on testing temperature ranges. In low temperature ranges, 570 deg C - 600 deg C, clear negative effects of steam pressure and no compositional effect were found on the oxidation rate. In contrast, steam pressure effect was minor and chemical composition (Cr content) became dominant in higher temperature range, 620 deg C - 700 deg C. Structure and chemical composition of oxide scales were analyzed using an analytical electron microscope and X-ray diffraction technique. Although oxide scales were always formed in a duplex layered structure for all the steels, oxide type, structure, and chemical composition of the oxide scales varied depending on material and testing condition. Formation of a Cr-enriched thin layer in the inner scales and oriented growth of the inner scale oxides were correlated with the oxidation kinetics.
机译:预计耐热钢的蒸汽氧化将成为高级发电厂中超超临界(USC)锅炉降解的主要问题之一。本文重点研究了新开发的耐热铁素体钢的蒸汽氧化动力学,该钢含有2.2%,9%或11%的Cr和约2%的W(HCM 2 S,NF 616,HCM 12 A)。这些钢的氧化速率是在加压的过热蒸汽中作为温度和压力的函数进行测量的。氧化率始终表现出抛物线性。根据测试温度范围,化学成分和压力的影响显示出有趣的对比。在570摄氏度至600摄氏度的低温范围内,蒸汽压明显产生负面影响,并且未发现氧化速率的组成影响。相反,在较高温度范围(620℃-700℃)中,蒸汽压力作用较小,化学成分(Cr含量)占主导地位。使用分析型电子显微镜和X射线衍射技术分析了氧化皮的结构和化学成分。尽管对于所有钢来说,氧化皮总是形成于双层结构中,但是氧化皮的氧化物类型,结构和化学成分会根据材料和测试条件而变化。内部氧化皮中富Cr薄层的形成和内部氧化皮的定向生长与氧化动力学相关。

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