氦
辐照
材料科学
合金
气泡
离子
透射电子显微镜
分析化学(期刊)
原子物理学
复合材料
纳米技术
核物理学
化学
物理
色谱法
有机化学
机械
作者
Awen Liu,Hefei Huang,Jizhao Liu,Zhenbo Zhu,Yan Li
标识
DOI:10.1088/1674-1056/ac3654
摘要
We report helium ion irradiation experiments for a new type of dispersion-strengthened NiMo-Y 2 O 3 alloy with three different irradiation doses and varying irradiation dose rates at 750 °C to evaluate its helium-induced damage behavior. Transmission electron microscopy was used to reveal the evolution of helium bubbles after irradiation. The experimental results show that with increasing ion dose, the number density of helium bubbles increases continuously. However, the mean size of helium bubbles first increases and then decreases, mainly due to the varied ion dose rates. The volume fractions of helium bubbles in the three investigated samples after irradiation are 0.15%, 0.32%, and 0.27%, which are lower than that of the Hastelloy N alloy (0.58%) after similar irradiation conditions. This indicates that the NiMo-Y 2 O 3 alloy exhibits better helium-induced-swelling resistance than the Hastelloy N alloy, highlighting its potential applicability to MSRs, from the perspective of irradiation performance.
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