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Effects of single- and simultaneous triple-ion-beam irradiation on an oxide dispersion-strengthened Fe12Cr steel

机译:单离子束和三离子束同时束对氧化物弥散强化的Fe12Cr钢的影响

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Oxide dispersion-strengthened (ODS) steels are main candidates for structural applications in future fusion reactors. Understanding their irradiation-induced behaviour is a key in building optimised components with enhanced radiation resistance. In this work, the stability of an ODS Fe12Cr steel was investigated by transmission electron microscopy after single- (Fe4+) and simultaneous triple-ion-beam irradiation (Fe8+, He+ and H+) at room temperature to doses of 4.4 and 10 dpa. The irradiations were accomplished at the JANNUS-Saclay facility. Results after single-ion-beam irradiation were also compared with those from a reference Fe12Cr steel produced following the same route. Analyses focused on determining the irradiation-induced loop size and density in the ODS and reference materials, investigating the grain boundary microchemistry and studying the evolution of the secondary phases present. These experiments show that the Y-rich nanoparticles present in the ODS steel are quite stable under these irradiation conditions although evolution of larger Cr-rich carbides could be taking place. Loop sizes are smaller for the ODS steel than for the reference material and appear to increase with dose. Cr segregates at some of the grain boundaries, though this segregation also occurs in the absence of irradiation.
机译:氧化物弥散强化(ODS)钢是未来聚变反应堆结构应用的主要候选材料。了解它们的辐射诱导行为是构建具有增强抗辐射性的优化组件的关键。在这项工作中,在室温下以4.4和10 dpa的剂量对单根(Fe4 +)和三离子束同时照射(Fe8 +,He +和H +)后,用透射电子显微镜研究了ODS Fe12Cr钢的稳定性。辐射是在JANNUS-Saclay设施完成的。还比较了单离子束辐照后的结果与按照相同路线生产的参比Fe12Cr钢的结果。分析的重点是确定ODS和参考材料中辐照引起的环尺寸和密度,研究晶界微化学,研究存在的第二相的演变。这些实验表明,在ODS钢中存在的富Y纳米颗粒在这些辐照条件下非常稳定,尽管可能发生较大的富Cr碳化物的析出。 ODS钢的套环尺寸小于参考材料的套环尺寸,并且似乎随着剂量的增加而增大。 Cr在某些晶界偏析,尽管这种偏析也会在没有照射的情况下发生。

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