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首页> 外文期刊>Thin Solid Films >Characterization of ceramic plasma-sprayed coatings, and interaction studies between U-Zr fuel and ceramic coated interface at an elevated temperature
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Characterization of ceramic plasma-sprayed coatings, and interaction studies between U-Zr fuel and ceramic coated interface at an elevated temperature

机译:陶瓷等离子喷涂涂层的表征,以及高温下U-Zr燃料与陶瓷涂层界面之间的相互作用研究

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摘要

Candidate coating materials for re-usable metallic nuclear fuel crucibles, HfN, Tie, ZrC, and Y_2O_3, were plasma-sprayed onto niobium substrates. The coating microstructure and the thermal cycling behavior were characterized, and U-Zr melt interaction studies carried out. The Y_2O_3 coating layer had a uniform thickness and was well consolidated with a few small pores scattered throughout. While the HfN coating was not well consolidated with a considerable amount of porosity, but showed somewhat uniform thickness. Thermal cycling tests on the HfN, TiC, ZrC, and Y_2O_3 coatings showed good cycling characteristics with no interconnected cracks forming even after 20 cycles. Interaction studies done on the coated samples by dipping into a U-20wt.%Zr melt indicated that HfN and Y_2O_3 did not form significant reaction layers between the melt and the coating while the TiC and the ZrC coatings were significantly degraded. Y_2O_3 exhibited the most promising performance among HfN, TiC, ZrC, and Y_2O_3 coatings.
机译:将可重复使用的金属核燃料坩埚的候选涂层材料HfN,Tie,ZrC和Y_2O_3等离子喷涂到铌基底上。表征了涂层的微观结构和热循环行为,并进行了U-Zr熔体相互作用研究。 Y_2O_3涂层具有均匀的厚度并且被充分固结,并且散布有一些小孔。虽然HfN涂层没有很好地固结并具有相当大的孔隙率,但显示出一定程度的均匀厚度。在HfN,TiC,ZrC和Y_2O_3涂层上进行的热循环测试显示出良好的循环特性,即使经过20个循环也没有形成相互连接的裂纹。通过浸入U-20wt。%Zr熔体对涂层样品进行的相互作用研究表明,HfN和Y_2O_3在熔体和涂层之间未形成明显的反应层,而TiC和ZrC涂层则明显降解。 Y_2O_3在HfN,TiC,ZrC和Y_2O_3涂层中表现出最有希望的性能。

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  • 来源
    《Thin Solid Films 》 |2011年第20期| p.6969-6973| 共5页
  • 作者单位

    Recycled Fuel Technology Development Division, Korea Atomic Energy Research Institute, Daejeon 305-353, Republic of Korea;

    Recycled Fuel Technology Development Division, Korea Atomic Energy Research Institute, Daejeon 305-353, Republic of Korea;

    Recycled Fuel Technology Development Division, Korea Atomic Energy Research Institute, Daejeon 305-353, Republic of Korea;

    Nuclear Fuel and Materials Division, Idaho National Laboratory, P.O. BOX 1625, Idaho Falls, 7D 83415, USA;

    Nuclear Fuel and Materials Division, Idaho National Laboratory, P.O. BOX 1625, Idaho Falls, 7D 83415, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    metallic fuel; ceramic crucible; plasma-sprayed coating; thermal cycling; interaction;

    机译:金属燃料;陶瓷坩埚;等离子喷涂涂层;热循环;相互作用;

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