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- W2724818557 abstract "AbstractIt has been found that under certain conditions, hydrogen retention would be strongly enhanced in irradiated austenitic stainless steels. To investigate the effect of the retained hydrogen on the defect microstructure, AL-6XN stainless steel specimens were irradiated with low energy (100 keV) H2+ so that high concentration of hydrogen was injected into the specimens while considerable displacement damage dose (up to 7 dpa) was also achieved. Irradiation induced dislocation loops and voids were characterised by transmission electron microscopy. For specimens irradiated to 7 dpa at 290 °C, dislocation loops with high number density were found and the void swelling was observed. At 380 °C, most of dislocation loops were unfaulted and tangled at 7 dpa, and the void swellings were observed at 5 dpa and above. Combining the data from low dose in previous work to high dose, four stages of dislocation loops evolution with hydrogen retention were suggested. Finally, molecular dynamics simulation was made t..." @default.
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- W2724818557 date "2017-07-04" @default.
- W2724818557 modified "2023-10-17" @default.
- W2724818557 title "Evolution of dislocation loops in austenitic stainless steels implanted with high concentration of hydrogen" @default.
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- W2724818557 doi "https://doi.org/10.1080/14786435.2017.1347725" @default.
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