Title :
Characterization of the defects in oxide dispersion-strengthened iron alloy after helium ion irradiation
Author :
P. L. Gao;X. Ju;Y. Xin;Q. S. Cao;P. L. Gao;Y. Xin;Z. M. Guo;L. P. Guo;B. Y. Wang
Author_Institution :
Department of Physics, University of Science and Technology Beijing, China
fDate :
5/1/2015 12:00:00 AM
Abstract :
Vacancy-type defects in Fe-2%Al2O3 (ODS-Fe) and pure Fe produced by helium ion irradiation at room temperature were investigated using positron beam Doppler broadening energy spectra (DBES). Defect profiles of the S parameter derived from DBES as a function of positron incident energy up to 20 KeV were analyzed. The S parameter values of the damaged layer for the ODS-Fe are smaller than those of pure Fe for irradiation dose of 1e+16/cm2. This finding indicates that ODS-Fe has a higher irradiation resistance than pure Fe. It also suggests that helium irradiation induced point defects in ODS-Fe were trapped and annihilated at the interfaces between the Fe matrix and the Al2O3 nanoparticles. The S-W curves indicate that only one type of defect was formed in the post-irradiated ODS-Fe. Vacancy clusters and helium-vacancy complexes were identified as the main defects. The defects are complicated for the irradiated pure Fe, for which the surface defects are different from the ones inside bulk.
Keywords :
"Iron","Radiation effects","Helium","Positrons","Scattering parameters","Steel"
Conference_Titel :
Fusion Engineering (SOFE), 2015 IEEE 26th Symposium on
Electronic_ISBN :
2155-9953
DOI :
10.1109/SOFE.2015.7482326