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Microstructural Characterization of Irradiated Fuels and Materials for the United States High Performance Research Reactor Fuel Development Program and the Fuel Cycle Research and Development Program

机译:美国高性能研究堆燃料开发计划和燃料循环研究与开发计划的辐照燃料和材料的微观结构表征

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摘要

In an effort to contribute to the development of advanced nuclear fuel for research reactors, monolithic and dispersion plate fuels will be examined to determine how irradiation parameters such as fission density, fission rate, and irradiation temperature, as well as mechanical parameters such as composition and fabrication, affect the final microstructure of the fuel, post irradiation. Electron Backscatter Detection (EBSD) analysis capabilities of irradiated materials will be developed as well as improvements on irradiated sample preparation in order to provide higher quality samples for SEM, FIB, and TEM. In addition, image analysis techniques developed at Idaho National Laboratory (INL) will be employed to examine microstructural features such as fission product precipitates and fission gas bubbles. The main goals are to further develop EBSD capabilities on irradiated material; characterize microstructure of irradiated fuel to support qualification; develop a consistent, effective process for image analysis using INL developed software; and provide repeatable, statistically-confident, critically assessed data to further modeling efforts.
机译:为了促进研究堆先进核燃料的开发,将对整体式和分散板式燃料进行检查,以确定诸如裂变密度,裂变速率和辐照温度的辐照参数,以及诸如成分和密度的机械参数。辐射后,会影响燃料的最终微观结构。将开发辐照材料的电子背散射检测(EBSD)分析功能,并改进辐照样品的制备方法,以便为SEM,FIB和TEM提供更高质量的样品。此外,爱达荷州国家实验室(INL)开发的图像分析技术将用于检查微观结构特征,例如裂变产物沉淀和裂变气泡。主要目标是进一步开发受辐照材料的EBSD功能;表征辐照燃料的微观结构以支持鉴定;使用INL开发的软件开发一致,有效的图像分析过程;并提供可重复的,具有统计意义的,经过严格评估的数据,以进行进一步的建模工作。

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