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Radiation Resistance of Advanced Ferritic-Martensitic Steel HCM12A

机译:先进铁素体 - 马氏体钢HCM12A的辐射抗力

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HCM12A is an advanced 12 Cr ferritic-martensitic steel designed for higher temperature operation than could be achieved using earlier generation steels such as HT9. HCMI2A is one of the advanced alloys under consideration for application in core components in Generation IV nuclear energy systems, and is of particular interest to the supercritical water reactor, sodium fast reactor, and lead fast reactor designs. The radiation resistance of HCM12A has not previously been studied. This work provides information on the hardening and microstructural changes in HCM12A after irradiation using 2 0 MeV protons at 400°C to 10 dpa and 5 MeV Ni-ions at 500°C to 50 dpa. Following irradiation, changes in hardness were measured using Vickers hardness indentation, changes in microstructure and phase stability were studied using transmission electron microscopy, and changes in microchemistry were measured using scanning Auger microscopy. The hardness increases by roughly 70 % and saturates by roughly 5 dpa The changes to the microstructure contributing to this hardness increase are primarily due to the formation of precipitate phases, with some contribution from changes in dislocation density. Chromium is enriched at grain boundaries prior to irradiation, likely due to grain boundary carbides, and increases further during the irradiation.
机译:HCM12A是一个高级12 CR铁素体 - 马氏体钢,专门用于更高的温度操作,而不是使用诸如HT9的早期的发电钢来实现。 HCMI2A是在IV核能系统中核心组件中的应用中考虑的先进合金之一,对超临界水反应器,快速反应器和铅快速反应器设计特别感兴趣。 HCM12A的辐射抗性尚未研究过。这项工作提供了在400℃至10dPa和500℃至50dPa的5meV Ni-离子在400℃至10dPa和5meV Ni-离子中照射后HCM12A的硬化和微观结构变化的信息。在照射后,使用维氏硬度凹陷测量硬度变化,使用透射电子显微镜研究微观结构和相位稳定性的变化,并使用扫描螺旋钻显微镜测量微化学的变化。硬度增加大约70%并通过大约5dPa饱和饱和,对该硬度增加的微观结构的变化主要是由于沉淀相的形成,从位错密度的变化中产生了一些贡献。在照射之前富含晶界的铬,可能由于晶界碳化物,并且在照射期间进一步增加。

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