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Published in: Metallurgical and Materials Transactions A 5/2018

01-03-2018

Unraveling Recrystallization Mechanisms Governing Texture Development from Rare-Earth Element Additions to Magnesium

Authors: Aidin Imandoust, Christopher D. Barrett, Talal Al-Samman, Mark A. Tschopp, Elhachmi Essadiqi, Norbert Hort, Haitham El Kadiri

Published in: Metallurgical and Materials Transactions A | Issue 5/2018

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Abstract

The origin of texture components often associated with rare-earth element (REE) additions in wrought magnesium alloys is a long-standing problem in magnesium technology. While their influence on the texture is unquestionable, it is not yet clear why certain texture components, such as \( \langle 11\bar{2}1 \rangle ||{\text{extrusion}}\;{\text{direction}}, \) are favored over other components typically observed in traditional magnesium alloys. The objective of this research is to identify the mechanisms accountable for these RE textures during early stages of recrystallization. Electron backscattered diffraction and transmission electron microscopy analyses reveal that REEs in zinc-containing magnesium alloys corroborate discontinuous dynamic recrystallization. REEs promote isotropic growth for all nuclei generated through the bulging mechanism. During nucleation, the effect of REEs on orientation selection was explained by the diversified activity of both \( \langle 10\bar{1}0 \rangle \) and [0001] Taylor axes in the same grain with a marked preference for [0001] rotations to occur first. During nuclei growth, no growth preference was observed when sufficient REEs are added in the zinc-containing magnesium alloys, instead isotropic nuclei growth across all grain orientations occurs. This phenomenon is attributed to REEs segregating to grain boundaries (GBs), in agreement with prior computational and theoretical results (Barrett et al., Scripta Mater 146:46–50, 2018) that show a more isotropic GB energy and mobility after segregation.

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Metadata
Title
Unraveling Recrystallization Mechanisms Governing Texture Development from Rare-Earth Element Additions to Magnesium
Authors
Aidin Imandoust
Christopher D. Barrett
Talal Al-Samman
Mark A. Tschopp
Elhachmi Essadiqi
Norbert Hort
Haitham El Kadiri
Publication date
01-03-2018
Publisher
Springer US
Published in
Metallurgical and Materials Transactions A / Issue 5/2018
Print ISSN: 1073-5623
Electronic ISSN: 1543-1940
DOI
https://doi.org/10.1007/s11661-018-4520-8

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