Scanning electron microscopy examination of a Fast Flux Test Facility irradiated U-10Zr fuel cross section clad with HT-9
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Scanning electron microscopy examination of a Fast Flux Test Facility irradiated U-10Zr fuel cross section clad with HT-9

机译:扫描电子显微镜检查快速助焊剂测试设施辐照的U-10ZR燃料横截面与HT-9

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AbstractObservations from a scanning electron microscopy examination of irradiated U-10Zr fuel are presented. The sample studied had a local burnup of 5.7 atom percent and a local inner cladding temperature of 615?°C. This examination by electron microscopy has concentrated on producing data relevant to facilitating a better understanding of Zr redistribution in irradiated U-10Zr fuel and on a better understanding of the complex microstructure present in fuel cladding chemical interaction (FCCI) layers. The presented zirconium redistribution data supplements the existing literature by providing a data set at these particular local conditions. In addition to FCCI layers that are readily visible in optical microscopy, this examination has revealed lanthanide degradation of the cladding by what appears to be a grain boundary facilitated pathway. Precipitates of fission produced Pd-lanthanide compounds were observed in the fuel. Precipitated regions with elevated Mo and elevated W content were also observed in the HT-9 cladding of this sample.Highlights?Observations from a scanning electron microscopy examination of irradiated U-10Zr fuel are presented.?The redistribution of Zr in irradiated U-10Zr fuel at this local condition was evaluated.?The microstructure present in fuel cladding chemical interaction (FCCI) layers included some previously unobserved behavior.]]>
机译:<![CDATA [ 抽象 从扫描电子显微镜检查中的观察,呈现出照射的U-10ZR燃料的扫描电子显微镜检查。研究的样品具有5.7原子百分比的局部燃烧,局部内包层温度为615Ω·℃。通过电子显微镜检查的这种检查集中于生产相关的数据,以促进辐照的U-10ZR燃料中的Zr再分配,并更好地理解燃料包层化学相互作用(FCCI)层中存在的复杂微观结构。借调的锆锆再分配数据通过在这些特定的本地条件下提供数据来补充现有文献。除了在光学显微镜中容易可见的FCCI层之外,该检查揭示了通过似乎是晶界促进途径的薄片的镧介质降解。在燃料中观察到裂变产生的Pd-镧系化合物的沉淀物。在该样品的HT-9包层中还观察到具有升高的Mo和升高的W含量的沉淀区域。 突出显示 从扫描电子显微镜检查辐照的U-10ZR燃料的观察结果。 在此本地条件下Zr的再分布在辐照U-10ZR燃料中被评估。 Microstruc燃料包层化学相互作用(FCCI)层中存在一些先前未观察到的行为。 ]]>

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