会议论文详细信息
13th International Workshop on Slow Positron Beam Techniques and Applications
Formation of Cu precipitates in a high-energy-particle-irradiated and thermally aged Fe-0.6%Cu alloy
Sato, K.^1 ; Xu, Q.^1 ; Cao, X.Z.^2 ; Zhang, P.^2 ; Wang, B.Y.^2 ; Tsuchida, H.^3
Research Reactor Institute, Kyoto University, Kumatori-cho, Osaka 590-0494, Japan^1
Key Laboratory of Nuclear Analysis Techniques, Institute of High Energy Physics, Chinese Academy of Sciences, Beijing 100049, China^2
Quantum Science and Engineering Center, Kyoto University, Kyoto 611-0011, Uji, Japan^3
关键词: Cu precipitates;    Defect growth;    Fe-Cu alloys;    High-energy particle irradiation;    High-energy particles;    Positron beams;    Positron energy;    Vacancy cluster;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/505/1/012011/pdf
DOI  :  10.1088/1742-6596/505/1/012011
来源: IOP
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【 摘 要 】
The stability of Cu precipitates in thermally aged Fe-Cu alloys after high-energy particle irradiation was investigated using a mono-energetic positron beam apparatus. The S-parameters did not change with increasing incident positron energy above 15 keV, which means positron annihilation at the surface does not influence the Doppler broadening (DB) spectra. In a non-aged sample, the S-parameter increased, while the W-parameter did not change upon ion irradiation at above 10 keV. By contrast, in the thermally aged sample, the S-parameter increased, while the W-parameter decreased upon ion irradiation. The DB spectra of thermally aged and non-aged samples have nealy the same shape after high-energy particle irradiation. In both thermally aged and non-aged samples, almost all positrons annihilate with electrons in Cu, and vacancy clusters covered with Cu atoms are formed upon neutron irradiation. This agrees with the results of previous studies. However, the defect growth process may be different in aged and non-aged samples.
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