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Thermochemical Compatibility and Oxidation Resistance of Advanced LWR Fuel Cladding

机译:先进轻水堆燃料熔覆层的热化学相容性和抗氧化性

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摘要

The thermochemical compatibility of potential replacement fuel rod cladding materials for zirconium alloys in light water reactors was assessed. Considered were the family of FeCrAl alloys, Nb-1%Zr (similar to PWC-11), and a hybrid SiC-composite with a metallic barrier layer. The niobium alloy was also seen as requiring an oxidation protective layer, and a diffusion silicide was investigated. Metallic barrier layers for the SiC-composite reviewed included an FeCrAl alloy, Nb-1%Zr, and chromium. Thermochemical calculations were performed to determine oxidation behavior of the materials in steam and for hybrid SiC-composites to determine possible interactions between the metallic layer and SiC. In addition, experimental exposures of SiC-FeCrAl alloy reaction couples at 673, 1073, and 1273 K for 168 h in an inert atmosphere were made, and microanalysis was performed. Whereas all materials were determined to oxidize under higher oxygen partial pressures in the steam environment, these varied by material. The computed and experimental results indicate the formation of liquid phase eutectic in the FeCrAl-SiC system at the higher temperatures.
机译:评估了轻水反应堆中锆合金的潜在替代燃料棒包层材料的热化学相容性。考虑的是FeCrAl合金,Nb-1%Zr(类似于PWC-11)和具有金属阻挡层的混合SiC复合材料。还认为铌合金需要氧化保护层,并且研究了扩散硅化物。所审查的用于SiC复合材料的金属阻挡层包括FeCrAl合金,Nb-1%Zr和铬。进行热化学计算以确定材料在蒸汽中的氧化行为,并对混合SiC复合材料确定金属层与SiC之间可能的相互作用。此外,在惰性气氛下对SiC-FeCrAl合金反应对在673、1073和1273 K下进行了168小时的实验暴露,并进行了微分析。尽管确定所有材料在蒸汽环境中的较高氧气分压下都会发生氧化,但这些压力因材料而异。计算结果和实验结果表明,FeCrAl-SiC体系在较高温度下会形成液相共晶。

著录项

  • 来源
    《Nuclear Technology》 |2016年第2期|181-191|共11页
  • 作者单位

    University of South Carolina, Columbia, South Carolina;

    Oak Ridge National Laboratory, Materials Science and Technology Division, Oak Ridge, Tennessee;

    Oak Ridge National Laboratory, Materials Science and Technology Division, Oak Ridge, Tennessee;

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

    Cladding; ferritic; silicon carbide;

    机译:覆层铁素体碳化硅;

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