Microstructure and Texture Evolution of GWS841 Magnesium Alloy During Hot Extrusion

In this experiment, the solid solution GWS841 magnesium alloy was deformed by hot extrusion at 500 °C. EBSD was used to analyze the evolution of microstructure and texture under different degrees of deformation. The results showed that the average grain size decreased from 75.8 μm to 3.2 μm and the DRX fraction increased from 5.6 ± 1.5% (position A) to 84.5 ± 3.8% (position D). The fraction of low-angle grain boundaries (LAGB) first increased and then decreased with the increase in deformation ratio. Three main nucleation mechanisms operate during hot extrusion: twin-induced dynamic recrystallization, continuous dynamic recrystallization and discontinuous dynamic recrystallization, with continuous dynamic recrystallization as the dominant nucleation mechanism. A fiber texture was formed during the extrusion process, which originated from the non-DRXed grains and the intensity of the fiber texture first increased and then decreased with the increase in the deformation ratio. The DRXed grains formed the fiber texture.

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Publication Details

Journal
Materials
Published
2026-09-04
DOI
https://doi.org/10.3390/ma19173760
Primary Topic
Magnesium Alloys: Properties and Applications
Type
article
Field-Weighted Citation Impact
0.00

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article

Microstructure and Texture Evolution of GWS841 Magnesium Alloy During Hot Extrusion

Guang Su, Zhen Feng, Lipeng Yan, Nannan Wang et al.
Materials
Magnesium Alloys: Properties and Applications
article

Microstructure and Texture Evolution of GWS841 Magnesium Alloy During Hot Extrusion

Guang Su, Zhen Feng, Lipeng Yan, Nannan Wang, Zhaohui Li, Shuwen He, Hongjiang Zheng
article en

Abstract

In this experiment, the solid solution GWS841 magnesium alloy was deformed by hot extrusion at 500 °C. EBSD was used to analyze the evolution of microstructure and texture under different degrees of deformation. The results showed that the average grain size decreased from 75.8 μm to 3.2 μm and the DRX fraction increased from 5.6 ± 1.5% (position A) to 84.5 ± 3.8% (position D). The fraction of low-angle grain boundaries (LAGB) first increased and then decreased with the increase in deformation ratio. Three main nucleation mechanisms operate during hot extrusion: twin-induced dynamic recrystallization, continuous dynamic recrystallization and discontinuous dynamic recrystallization, with continuous dynamic recrystallization as the dominant nucleation mechanism. A fiber texture was formed during the extrusion process, which originated from the non-DRXed grains and the intensity of the fiber texture first increased and then decreased with the increase in the deformation ratio. The DRXed grains formed the fiber texture.

MaterialsVol. 19(17)
Hebei University of Technology (CN), Henan Institute of Technology (CN), Civil Aviation Flight University of China (CN)
Fundamental Research Funds for the Central Universities
Openalex Percentile: Top 20%
Magnesium Alloys: Properties and Applications
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Microstructure and Texture Evolution of GWS841 Magnesium Alloy During Hot Extrusion — Guang Su, Zhen Feng, et al. · Materials (2026) | TGRS Research Map | TGRS