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Combined TEM, PAS and SANS Investigation of Neutron-irradiated Pure Iron

机译:中子辐照纯铁的TEM,PAS和SANS组合研究

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Fission spectrum neutron irradiation of pure Fe at irradiation temperatures of about 300℃ gives rise to the formation of two populations of defects: planar dislocation loops and spherical vacancy-type clusters. Knowledge of the type and size distributions of these populations is important for the purpose of multi-scale modelling of the mechanical behaviour of Fe-based alloys. Among the experimental techniques with nanometer size resolution, transmission electron microscopy (TEM) and small-angle neutron scattering (SANS) allow to gain information on both nature and size distribution of particular types of defects. Furthermore, positron annihilation spectroscopy (PAS) is sensitive to sub-nanometer size open-volume defects. However, there is no single experimental technique capable of providing the full set of information required for calibration and validation of advanced models. Complementarity between the three techniques to identify and quantify the defects created by irradiation in pure Fe is emphasised in the paper. It is shown that while TEM allows direct size-resolved evidence of dislocation loops, PAS a qualitative appreciation of the existing sub-nanometer size vacancy-type clusters, SANS yields indirect size-resolved evidence of vacancy-type clusters, which form a sound basis for the quantification of the size distributions.
机译:在约300℃的辐照温度下,纯铁的裂变谱中子辐照导致形成了两个缺陷群:平面位错环和球形空位型团簇。对于铁基合金力学行为的多尺度建模而言,了解这些族群的类型和尺寸分布非常重要。在具有纳米尺寸分辨率的实验技术中,透射电子显微镜(TEM)和小角中子散射(SANS)允许获取有关特定类型缺陷的性质和尺寸分布的信息。此外,正电子an没光谱法(PAS)对亚纳米尺寸的开孔缺陷敏感。但是,没有单一的实验技术能够提供高级模型的校准和验证所需的全部信息。本文强调了三种技术之间的互补性,这些技术可用于识别和量化纯铁中辐照产生的缺陷。结果表明,尽管TEM可以直接得到大小分辨的位错环的证据,但PAS可以对现有的亚纳米尺寸空位类型的簇进行定性评价,而SANS可以间接得到大小分辨的空位类型的簇的证据,这是一个良好的基础用于量化尺寸分布。

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