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The influence of secondary phases on the deformation and static recrystallization behavior of Mg-Ca-Zn Alloy

delete2026-07-28
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Rogine A. Gomez *
A
Aeriel D. Murphy-Leonard
DOI:10.1016/j.jma.2026.102146delete
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Abstract

Abstract

En 中文
• Solution-treated Mg-Ca-Zn (XZ02-ST) exhibited extension, contraction, and double twinning as the major deformation modes. Additionally, evidence of basal and non-basal slip has been observed. • Precipitate-containing Mg-Ca-Zn (XZ02-PC) exhibited extension twinning as well as basal and non-basal slip as activated deformation modes. The formation of contraction and double twinning is suppressed. • Initial texture, grain size, and precipitates play a significant role in twin formation suppression that can be effective in texture weakening during deformation and recrystallization. • Grain boundaries, triple junctions, precipitates, and twin-GB intersections are effective nucleation sites for producing a weakened recrystallized texture in Mg alloys. • Alloying Mg with Ca and Zn shows promise in weakening deformation and recrystallization texture that can be associated with increased ductility and formability.

Journal

Journal of Magnesium and Alloys cover
Journal of Magnesium and Alloys
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13.8
Papers:
2.1K
Citations:
1.6W

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