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Effect of metastable Mg2Si and dislocations on α-Al(MnFe)Si dispersoid formation in Al-Mn-Mg 3xxx alloys

Li Zhen, Zhang Zhan et Chen X-Grant. (2018). Effect of metastable Mg2Si and dislocations on α-Al(MnFe)Si dispersoid formation in Al-Mn-Mg 3xxx alloys. Metallurgical and Materials Transactions A, 49, (11), p. 5799-5814.

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URL officielle: http://dx.doi.org/doi:10.1007/s11661-018-4852-4

Résumé

The effect of metastable Mg2Si and dislocations on the formation of α-Al(MnFe)Si dispersoids in Al-Mn-Mg 3xxx alloys were studied by a close examination of the dispersoid precipitation process using the quench technique and TEM observation. Special attention was paid to the nucleation mechanisms. Mg plays an important role in promoting the formation of α-Al(MnFe)Si dispersoids. The number density and volume fraction of the dispersoids in the Mg-containing alloy are much higher than those in the control alloy without Mg, resulting in a strong dispersoid strengthening effect. During the heating process in the Mg-containing alloy, metastable Mg2Si precipitated and dissolved, leaving local Si-rich areas on pervious metastable Mg2Si, which provide favorable nucleation sites for α-Al(MnFe)Si dispersoids. It was found that β′-Mg2Si precipitates were more effective at the promotion of the dispersoid nucleation than β″-Mg2Si. In the deformed sample, the dislocations become the preferable sites for the α-Al(MnFe)Si dispersoid nucleation. By reducing dispersoid-free zones, the dispersoid distribution became more uniform compared to the non-deformed sample. The dispersoid nucleation mechanisms based on both metastable Mg2Si and dislocations are proposed and discussed.

Type de document:Article publié dans une revue avec comité d'évaluation
ISSN:1073-5623
Volume:49
Numéro:11
Pages:p. 5799-5814
Version évaluée par les pairs:Oui
Date:2018
Identifiant unique:10.1007/s11661-018-4852-4
Sujets:Sciences naturelles et génie > Génie
Sciences naturelles et génie > Génie > Génie des matériaux et génie métallurgique
Sciences naturelles et génie > Sciences appliquées
Département, module, service et unité de recherche:Départements et modules > Département des sciences appliquées > Module d'ingénierie
Mots-clés:25 Microstructure, Al-Mn-Mg 3xxx alloys, deformed samples, dispersoid precipitation, heating process, nucleation mechanism, nucleation sites, number density, recipitation process, trengthening effect, TEM observations
Déposé le:06 oct. 2023 13:58
Dernière modification:06 oct. 2023 13:58
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