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Nickel-base superalloys for ultra-supercritical coal-fired power plants: Fireside corrosion. Laboratory studies and power plant exposures

机译:用于超超临界燃煤电厂的镍基高温合金:炉边腐蚀。实验室研究和电厂暴露

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摘要

The aim of the study was to determine the fireside corrosion performance of certain nickel-base super-alloys dedicated for construction of superheater and reheater sections of a boiler operating at advanced ultra-supercritical conditions. For this purpose, three nickel-base alloys varying in chromium content from 20% to 25% (Alloys 263, 617 and 740) were selected for laboratory tests up to 1000 h. Additionally, the chosen materials were exposed using a temperature-controlled corrosion probe in a 500 kWth pulverized fuel test rig, one lignite-fired and two hard-coal-fired power plants. The specimens' temperatures were in the range 640-760℃. The fireside corrosion was studied having in focus the synergy effect of combustion gas atmosphere, real fly ash deposits and alloy composition. Corrosion behavior of each alloy was determined using dimensional metrology and the obtained results were compared with data available from the literature. The values measured on the samples exposed in power plants fit well with the numbers generated from the laboratory tests performed at 24, 350 and 1000 h. Moreover the values are in good agreement with results found in the literature and similar alloy ranking based on corrosion resistance is confirmed by the literature. Clear sulphur-induced corrosion was noticed after 1000 h exposures in the laboratory furnaces at only one of the examined alloys, which is characterized by the highest molybdenum and lowest titanium content. Both of these elements are believed to play a significant role in the corrosion behavior of the examined alloys. In some metal rings exposed in power plants sulphur induced corrosion is witnessed. In contrast to iron-base austenitic steels no straight connection is observed between increasing chromium content and improved corrosion resistance in the nickel-base austenites. Intergranular oxidation with participation of alumina repeats and occasionally leads almost to a grain release. In laboratory conditions fly ash appears to partially inhibit the corrosive influence of the gas atmosphere, since it behaves to a certain extent as a protective barrier for the metal surface while acting as a "sulphur sink".
机译:该研究的目的是确定某些镍基高温合金的火侧腐蚀性能,这些镍基高温合金专门用于在超超临界条件下运行的锅炉的过热器和再热器部分。为此,选择了三种铬含量在20%至25%之间的镍基合金(合金263、617和740)用于长达1000小时的实验室测试。此外,使用温度控制腐蚀探针在500 kWth的粉状燃料试验台,一个褐煤电厂和两个硬煤电厂中对所选材料进行了暴露。标本温度范围为640-760℃。研究了炉边腐蚀,重点关注了燃烧气体气氛,真正的粉煤灰沉积物和合金成分的协同效应。使用尺寸度量确定每种合金的腐蚀行为,并将所得结果与可​​从文献中获得的数据进行比较。在电厂中暴露的样品上测得的值与在24、350和1000 h进行的实验室测试所产生的数值非常吻合。此外,这些值与文献中的结果高度吻合,并且文献中也证实了基于耐腐蚀性的相似合金等级。在实验室炉中暴露1000小时后,仅在一种被检查的合金上观察到明显的由硫引起的腐蚀,其特征在于最高的钼和最低的钛含量。据信这两种元素在所检查的合金的腐蚀行为中起着重要作用。在发电厂暴露的一些金属环中,可以看到硫引起的腐蚀。与铁基奥氏体钢相反,在镍基奥氏体中,铬含量的增加与耐蚀性的提高之间没有发现直接的联系。氧化铝参与的晶间氧化重复,有时几乎导致晶粒释放。在实验室条件下,粉煤灰似乎部分抑制了气体气氛的腐蚀作用,因为它在一定程度上充当了金属表面的保护屏障,同时又充当了“硫沉”的角色。

著录项

  • 来源
    《Fuel》 |2013年第6期|521-533|共13页
  • 作者单位

    Institute of Combustion and Power Plant Technology (IFK), University of Stuttgart, Pfaffenwaldring 23, 70569 Stuttgart, Germany;

    Institute of Combustion and Power Plant Technology (IFK), University of Stuttgart, Pfaffenwaldring 23, 70569 Stuttgart, Germany;

    Institute of Combustion and Power Plant Technology (IFK), University of Stuttgart, Pfaffenwaldring 23, 70569 Stuttgart, Germany;

    Institute of Combustion and Power Plant Technology (IFK), University of Stuttgart, Pfaffenwaldring 23, 70569 Stuttgart, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ultra-supercritical power plant; fireside corrosion; nickel superalloys: 263, 617, 740;

    机译:超超临界发电厂;炉边腐蚀;镍超合金:263、617、740;

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