The effect of hydrogen on vacancy generation in iron by plastic deformation

02 engineering and technology 0210 nano-technology 7. Clean energy
DOI: 10.1016/j.scriptamat.2006.08.030 Publication Date: 2006-09-19T12:09:23Z
ABSTRACT
Positron lifetime spectroscopy was applied to examine the synergistic effect of hydrogen and plastic straining on the vacancy generation in iron. Hydrogen enhanced the increase in mean positron lifetime, τm, by plastic straining and elevated the recovery temperature of τm on isochronal annealing. Multi-component analyses of positron lifetime spectra showed that the presence of hydrogen enhances the generation of vacancies, rather than of dislocations. These results are consistent with previous interpretations on thermal desorption analysis of hydrogen in deformed steels.
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