4.7 Article

On the microstructure and RE-texture evolution during hot tensile deformation of Mg-Gd-Y-Zn-Zr alloy

Journal

JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T
Volume 15, Issue -, Pages 6974-6989

Publisher

ELSEVIER
DOI: 10.1016/j.jmrt.2021.11.058

Keywords

Magnesium alloys; Thermomechanical processing; Texture; LPSO; Twinning; Recrystallization

Ask authors/readers for more resources

The study investigated the correlation between microstructure/texture evolutions and high temperature flow behavior in Mg alloy containing long period stacking order (LPSO) phases. The annealing treatment effectively strengthened the alloy and decreased ductility, with blocky LPSO assisting dynamic recrystallization and lamellar LPSO increasing alloy strength. The findings suggest that microstructure and texture evolution play a significant role in the high-temperature behavior of the Mg alloy.
This study was conducted to investigate the correlation between the microstructure/ texture evolutions and the high temperature flow behavior of Mg-8.3Gd-3.6Y-1.6Zn-0.5Zr (wt. %) alloy containing long period stacking order (LPSO) phases. Toward this end, the hot tensile tests were conducted at 350 and 400 degrees C on two different starting microstruc-tures: (i) as-extruded containing blocky LPSO, and (ii) as-annealed, which contained both blocky and lamellar LPSO phases. The peak stresses of the annealed microstructures at 350 and 400 degrees C, i.e. 200 and 80 MPa, were almost twice that of extruded ones at the same temperatures, i.e. 117 and 39 MPa, respectively. The annealing treatment effectively strengthened the alloy and decreased the ductility value. This was justified relying on the grain growth, deformation twinning and texture evolution, but a special emphasize was paid on the effect of lamellar and blocky LPSO phases. It was found that the blocky LPSO could assist the dynamic recrystallization through activation of particle stimulated nucleation (PSN) mechanism and effectively contributed in the formation of rare earth (RE)-texture component. This provided high Schmid factors for operation of basal slip and improved the ductility values. On the contrary, the fine lamellar LPSO effectively increased the strength of the alloy via texture hardening but reduced the ductility. The lamellar LPSO played a key role in the formation and strengthening of the < 10-10 > fiber texture, retarded the recrystallization process and suppressed the formation of RE-texture component. (C) 2021 The Author(s). Published by Elsevier B.V.

Authors

I am an author on this paper
Click your name to claim this paper and add it to your profile.

Reviews

Primary Rating

4.7
Not enough ratings

Secondary Ratings

Novelty
-
Significance
-
Scientific rigor
-
Rate this paper

Recommended

No Data Available
No Data Available