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- W2019573669 abstract "Proton irradiation in combination with positron annihilation and nanoindentation offers the possibility to characterize irradiation damage in a range of dose. Proton irradiation experiments for Fe–0.3 wt.%Cu alloys were carried out at about 100 °C with an energy of 240 keV. Slow positron beam Doppler broadening spectroscopy was used to detect the depth dependence of microstructure evolution. The constant stiffness measurement (CSM) with a diamond Berkovich indenter was used to obtain the depth profile of hardness. The results showed that S-parameter in the analysis of positron annihilation increased with dose after irradiation owing to open-volume defects induced by proton irradiation. For specimens irradiated with different dose, hardness values exceeded that of un-irradiated alloys. The correlation between positron parameters and hardness was found. The hardness of any dpa was also calculated by Kasada method." @default.
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- W2019573669 date "2013-07-01" @default.
- W2019573669 modified "2023-10-14" @default.
- W2019573669 title "Proton-irradiation-induced damage in Fe–0.3wt.%Cu alloys characterized by positron annihilation and nanoindentation" @default.
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- W2019573669 doi "https://doi.org/10.1016/j.nimb.2012.11.090" @default.
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