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Nondestructive SANS Study of Reactor Pressure Vessel Steel after Irradiation

机译:辐照后反应堆压力容器钢的无损SANS研究

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The irradiation induced defects of irradiated reactor pressure vessel(RPV) steel were investigated by a small angle neutron scattering. The degradation of the mechanical properties of RPV steels during an irradiation in a nuclear power plant is closely related to the irradiation induced defects. The size of these defects is known to be a few nanometers, and the small angle neutron scattering technique is regarded as the best non destructive technique to characterize the nano sized inhomogeneities in bulk samples. The RPV steel was irradiated in the HANARO reactor in KAERI. The small angle neutron scattering experiments were performed at SANS instrument in the HANARO reactor. Both unirradiated and irradiated RPV steels were measured and the SANS data of both steels were compared. The nano sized irradiation induced defects were quantitatively analyzed by SANS. The type of defects was also analyzed based on the SANS results, and the effect of the chemical composition of the RPV steel on the irradiation induced defects was discussed.
机译:通过小角度中子散射研究了反应堆压力容器(RPV)钢的辐照缺陷。 RPV钢在核电站辐照过程中的机械性能下降与辐照引起的缺陷密切相关。这些缺陷的大小已知为几纳米,小角度中子散射技术被认为是表征大体积样品中纳米级不均匀性的最佳非破坏性技术。 RPV钢在KAERI的HANARO反应器中进行了辐照。小角中子散射实验是在HANARO反应堆中的SANS仪器上进行的。测量了未辐照和辐照的RPV钢,并比较了两种钢的SANS数据。纳米尺寸辐照引起的缺陷通过SANS进行了定量分析。还根据SANS结果分析了缺陷的类型,并讨论了RPV钢的化学成分对辐照引起的缺陷的影响。

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