首页> 外文期刊>Microscopy and microanalysis: The official journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canada >Analysis of Radiation Damage in Light Water Reactors: Comparison of Cluster Analysis Methods for the Analysis of Atom Probe Data
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Analysis of Radiation Damage in Light Water Reactors: Comparison of Cluster Analysis Methods for the Analysis of Atom Probe Data

机译:轻水反应器辐射损伤分析:群体分析方法的比较分析原子探测数据

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摘要

Irradiation of reactor pressure vessel (RPV) steels causes the formation of nanoscale microstructural features (termed radiation damage), which affect the mechanical properties of the vessel. A key tool for characterizing these nanoscale features is atom probe tomography (APT), due to its high spatial resolution and the ability to identify different chemical species in three dimensions. Microstructural observations using APT can underpin development of a mechanistic understanding of defect formation. However, with atom probe analyses there are currently multiple methods for analyzing the data. This can result in inconsistencies between results obtained from different researchers and unnecessary scatter when combining data from multiple sources. This makes interpretation of results more complex and calibration of radiation damage models challenging. In this work simulations of a range of different microstructures are used to directly compare different cluster analysis algorithms and identify their strengths and weaknesses.
机译:反应器压力容器(RPV)钢的照射导致形成纳米级微结构特征(称为辐射损伤),其影响容器的机械性能。用于表征这些纳米级特征的关键工具是原子探测断层扫描(APT),由于其高空间分辨率和三维识别不同化学物质的能力。使用APT的微观结构观察可以基于对缺陷形成的机械理解的发展。然而,通过Atom探测分析,目前有多种用于分析数据的方法。这可能导致从不同研究人员获得的结果和在组合来自多个来源的数据时不必要的散射之间的不一致。这使得对结果的解释更复杂和抗辐射损伤模型的挑战。在这项工作中,一系列不同的微结构的模拟用于直接比较不同的聚类分析算法并识别它们的优点和缺点。

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