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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Predicting neutron damage using TEM with in situ ion irradiation and computer modeling
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Predicting neutron damage using TEM with in situ ion irradiation and computer modeling

机译:使用TEM使用TEM预测中子损伤原位离子辐照和计算机建模

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摘要

AbstractWe have constructed a computer model of irradiation defect production closely coordinated with TEM andin situion irradiation of Molybdenum at 80?°C over a range of dose, dose rate and foil thickness. We have reexamined our previous ion irradiation data to assign appropriate error and uncertainty based on more recent work. The spatially dependent cascade cluster dynamics model is updated with recent Molecular Dynamics results for cascades in Mo. After a careful assignment of both ion and neutron irradiation dose values in dpa, TEM data are compared for both ion and neutron irradiated Mo from the same source material. Using the computer model of defect formation and evolution based on thein situion irradiation of thin foils, the defect microstructure, consisting of densities and sizes of dislocation loops, is predicted for neutron irradiation of bulk material at 80?°C and compared with experiment. Reasonable agreement between model prediction and experimental data demonstrates a promising direction in understanding and predicting neutron damage using a closely coordinated program ofin situion irradiation experiment and computer simulation.Highlights?
机译:<![CDATA [ 抽象 我们已经构建照射缺陷生产的计算机模型用TEM和原位< / CE:斜体>离子钼的在80照射℃,在一定范围的剂量,剂量率和箔的厚度。我们重新审视我们以前离子辐照数据分配基于最近的工作相应的错误和不确定性。的空间依赖级联簇动力学模型与最近的分子动力学结果在Mo的级联在DPA既离子和中子照射剂量值的仔细分配后更新,TEM数据进行比较两种离子和中子从相同的源材料照射沫。使用基于所述的缺陷形成演化的计算机模型原位薄箔,缺陷的微结构,包括密度和位错环的尺寸中的离子照射,被预测为的中子辐照在80散装材料?℃,并用实验进行比较。模型预测和实验数据之间的吻合在理解和使用的紧密协调的程序预测中子损伤演示了一个有希望的方向原位。离子照射实验和计算机模拟 亮点 <?CE:对ID =

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