AbstractPositron lifetime spectroscopy (PALS) is employed to study retained vacancies in Fe75Al25 and Fe70Al25X5 X= (Cr, Ni) after various thermal treatments. The PALS spectra were analyzed with the two states trapping model. The positron lifetime in defects suggests that they are Fe-monovacancies. The vacancy concentration, determined by the rates of trapping positrons to vacancies, strongly depends on the cooling rate of the sample and the ternary addition. An addition of Cr lowers, whereas an addition of Ni increases the concentration of the retained vacancies in relation to Fe75Al25 samples after the same heat treatment
Oxide dispersion strengthened Fe14Cr and Fe14CrWTi alloys produced by mechanical alloying and hot is...
The role of point defects in temporal evolution of Cr-rich alpha-prime phase separation in binary Fe...
Oxide dispersion strengthened Fe14Cr and Fe14CrWTi alloys produced by mechanical alloying and hot is...
AbstractPositron lifetime spectroscopy (PALS) is employed to study retained vacancies in Fe75Al25 an...
FeAl alloys of nominal Al content 28, 38 and 45 at.% and Fe28Al5Cr with minor alloying elements adde...
Abstract. The defect structure of Fe28Al samples is examined with the Positron Annihilation Lifetime...
Positron annihilation lifetime spectroscopy (PALS) was used to study the defect structure of stoichi...
The positron lifetime spectroscopy is employed to study vacancy formation in intermetallic phases of...
The positron lifetime spectroscopy is employed to study vacancy formation in intermetallic phases of...
Positron annihilation spectroscopy (PAS) is a powerful, non-destructive technique used to characteri...
Positron annihilation spectroscopy (PAS) is a powerful, non-destructive technique used to characteri...
Since positron annihilation measurement is very useful to the study of defects in solids, many inves...
Oxide dispersion strengthened Fe14Cr and Fe14CrWTi alloys produced by mechanical alloying and hot is...
Oxide dispersion strengthened Fe14Cr and Fe14CrWTi alloys produced by mechanical alloying and hot is...
Positrons administer a unique non-destructive approach to probe materials with atomic-scale sensitiv...
Oxide dispersion strengthened Fe14Cr and Fe14CrWTi alloys produced by mechanical alloying and hot is...
The role of point defects in temporal evolution of Cr-rich alpha-prime phase separation in binary Fe...
Oxide dispersion strengthened Fe14Cr and Fe14CrWTi alloys produced by mechanical alloying and hot is...
AbstractPositron lifetime spectroscopy (PALS) is employed to study retained vacancies in Fe75Al25 an...
FeAl alloys of nominal Al content 28, 38 and 45 at.% and Fe28Al5Cr with minor alloying elements adde...
Abstract. The defect structure of Fe28Al samples is examined with the Positron Annihilation Lifetime...
Positron annihilation lifetime spectroscopy (PALS) was used to study the defect structure of stoichi...
The positron lifetime spectroscopy is employed to study vacancy formation in intermetallic phases of...
The positron lifetime spectroscopy is employed to study vacancy formation in intermetallic phases of...
Positron annihilation spectroscopy (PAS) is a powerful, non-destructive technique used to characteri...
Positron annihilation spectroscopy (PAS) is a powerful, non-destructive technique used to characteri...
Since positron annihilation measurement is very useful to the study of defects in solids, many inves...
Oxide dispersion strengthened Fe14Cr and Fe14CrWTi alloys produced by mechanical alloying and hot is...
Oxide dispersion strengthened Fe14Cr and Fe14CrWTi alloys produced by mechanical alloying and hot is...
Positrons administer a unique non-destructive approach to probe materials with atomic-scale sensitiv...
Oxide dispersion strengthened Fe14Cr and Fe14CrWTi alloys produced by mechanical alloying and hot is...
The role of point defects in temporal evolution of Cr-rich alpha-prime phase separation in binary Fe...
Oxide dispersion strengthened Fe14Cr and Fe14CrWTi alloys produced by mechanical alloying and hot is...