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EBSD and TEM characterization of high burn-up mixed oxide fuel

机译:高燃耗混合氧化物燃料的EBSD和TEM表征

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Understanding and studying the irradiation behavior of high burn-up oxide fuel is critical to licensing of future fast breeder reactors. Advancements in experimental techniques and equipment are allowing for new insights into previously irradiated samples. In this work dual column focused ion beam (FIB)/scanning electron microscope (SEM) was utilized to prepared transmission electron microscope samples from mixed oxide fuel with a burn-up of 6.7% FIMA. Utilizing the FIB/SEM for preparation resulted in samples with a dose rate of <0.5 mRem/h compared to ~1.1 R/h for a traditionally prepared TEM sample. The TEM analysis showed that the sample taken from the cooler rim region of the fuel pellet had ~2.5× higher dislocation density than that of the sample taken from the mid-radius due to the lower irradiation temperature of the rim. The dual column FIB/SEM was additionally used to prepared and serially slice ~25 lm cubes. High quality electron back scatter diffraction (EBSD) were collected from the face at each step, showing, for the first time, the ability to obtain EBSD data from high activity irradiated fuel.
机译:了解和研究高燃尽氧化物燃料的辐照行为对获得未来快速增殖反应堆的许可至关重要。实验技术和设备的进步使人们对以前辐照过的样品有了新的认识。在这项工作中,利用双柱聚焦离子束(FIB)/扫描电子显微镜(SEM)从混合氧化物燃料制备的透射电子显微镜样品,燃耗为6.7%FIMA。利用FIB / SEM进行制备的样品剂量率<0.5 mRem / h,而传统制备的TEM样品的剂量率约为1.1 R / h。 TEM分析表明,由于燃料轮缘的辐射温度较低,因此从燃料芯块较冷的轮缘区域获取的样品的位错密度比从中半径的样本高约2.5倍。此外,还使用双柱FIB / SEM制备并连续切片〜25 lm立方体。在每个步骤都从面部收集了高质量的电子背散射衍射(EBSD),这首次显示了从高活性辐照燃料获得EBSD数据的能力。

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