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Détail de l'auteur
Auteur C.W. Sinclair
Documents disponibles écrits par cet auteur
Affiner la rechercheRecovery kinetics in the presence of precipitates / R. Roumina in Acta materialia, Vol. 58 N° 1 (Janvier 2010)
[article]
in Acta materialia > Vol. 58 N° 1 (Janvier 2010) . - pp. 111–121
Titre : Recovery kinetics in the presence of precipitates : The softening response of an Al–Mg–Sc alloy Type de document : texte imprimé Auteurs : R. Roumina, Auteur ; C.W. Sinclair, Auteur Année de publication : 2010 Article en page(s) : pp. 111–121 Note générale : Métallurgie Langues : Anglais (eng) Mots-clés : Recovery Al–Sc alloy Precipitation Yield strength Résumé : Recovery of an Al–Mg–Sc alloy in the presence of Al3Sc precipitates has been studied. The results demonstrate that recovery can be separated into two stages. The initial stage is precipitate-independent and consistent with the recovery kinetics of binary Al–Mg alloys. The second is strongly influenced by the presence of precipitates. Precipitates slow recovery, allowing recovered microstructures to be maintained over long annealing times to high homologous temperatures without recrystallization. A physically based model that accounts for the precipitate dependence of recovery is presented and compared to experimental results. DEWEY : 669 ISSN : 1359-6454 En ligne : http://www.sciencedirect.com/science/article/pii/S1359645409005850 [article] Recovery kinetics in the presence of precipitates : The softening response of an Al–Mg–Sc alloy [texte imprimé] / R. Roumina, Auteur ; C.W. Sinclair, Auteur . - 2010 . - pp. 111–121.
Métallurgie
Langues : Anglais (eng)
in Acta materialia > Vol. 58 N° 1 (Janvier 2010) . - pp. 111–121
Mots-clés : Recovery Al–Sc alloy Precipitation Yield strength Résumé : Recovery of an Al–Mg–Sc alloy in the presence of Al3Sc precipitates has been studied. The results demonstrate that recovery can be separated into two stages. The initial stage is precipitate-independent and consistent with the recovery kinetics of binary Al–Mg alloys. The second is strongly influenced by the presence of precipitates. Precipitates slow recovery, allowing recovered microstructures to be maintained over long annealing times to high homologous temperatures without recrystallization. A physically based model that accounts for the precipitate dependence of recovery is presented and compared to experimental results. DEWEY : 669 ISSN : 1359-6454 En ligne : http://www.sciencedirect.com/science/article/pii/S1359645409005850