Unveiling the underlying mechanism of forming edge cracks upon high strain-rate rolling of magnesium alloy

B Zhu, X Liu, C Xie, J Su, P Guo, C Tang… - Journal of Materials …, 2020 - Elsevier
In the current study, high strain-rate rolling (≥ 10 s− 1) has been successfully employed to
produce Mg-3Al-1Zn alloy sheets to a high reduction of 82% with a fine grain structure in a …

Investigation of the microstructure and properties of extrusion-shear deformed ZC61 magnesium alloy under high strain rate deformation

Z Wang, G Cao, F Wang, L Zhou, P Mao, X Jiang… - Materials …, 2021 - Elsevier
Abstract In this study, Mg-6Zn-1Cu-0.6 Zr (ZC61) alloy was fabricated using a novel
extrusion-shearing process that combines traditional hot extrusion with equal-channel …

Twinning, dynamic recrystallization, and crack in AZ31 magnesium alloy during high strain rate plane strain compression across a wide temperature

X Liu, BW Zhu, C Xie, J Zhang, CP Tang… - Materials Science and …, 2018 - Elsevier
Plane strain compression (PSC) tests were carried out on as-cast AZ31 magnesium alloy
samples at temperatures from 250 to 400° C with different strain rates (≥ 10 s− 1). The …

Dynamic recrystallization behavior and microstructural evolution of Mg alloy AZ31 through high-speed rolling

JH Lee, JU Lee, SH Kim, SW Song, CS Lee… - Journal of materials …, 2018 - Elsevier
High-speed rolling (HSR) is known to improve the workability of Mg alloys significantly,
which makes it possible to impose a large reduction in a single pass without fracture. In the …

Microstructure evolution and mechanical properties of Mg-3Al-3Sn-1Zn alloy during multi-pass high-speed rolling

P Di, W Li, G Zhibao, Y Zhongkui, H Xuhao… - Journal of Alloys and …, 2023 - Elsevier
The microstructure evolution and mechanical properties of as-homogenized Mg-3Al-3Sn-
1Zn (ATZ331) alloy with an initial grain size of∼ 126.7 µm are studied during multi-pass …

Promotion of texture weakening in magnesium by alloying and thermomechanical processing:(I) alloying

M Sanjari, A Farzadfar, ASH Kabir… - Journal of Materials …, 2014 - Springer
The recrystallization and texture evolution of four Mg–Zn–Ce sheets with a warm-rolled
microstructure obtained through two stages that can be characterised as rough rolling and …

Characteristics of magnesium AZ31 alloys subjected to high speed rolling

J Su, M Sanjari, ASH Kabir, IH Jung, JJ Jonas… - Materials Science and …, 2015 - Elsevier
Magnesium AZ31 alloy sheets were rolled at a high (1000 m/min) and a low (15 m/min)
rolling speed. The microstructure and texture evolution were tracked using optical …

[HTML][HTML] Texture weakening and grain refinement behavior of the extruded Mg-6.03 Zn-0.55 Zr alloy during hot plane strain compression

W Zhang, J Pan, S Wang, J Yang - Journal of Materials Research and …, 2023 - Elsevier
A series of hot plane strain compression (PSC) experiments of the extruded Mg-6.03 Zn-0.55
Zr alloy were conducted on the Gleeble-3500 machine with strain rates of 0.01 s− 1 to 10 s …

[HTML][HTML] Development of Mg–6Al–4Sn–1Zn alloy sheets with ultra-high strength by combining extrusion and high-speed rolling

T Yan, D Pei, M Cheng, Z Liang, X Li, X Wang - Journal of Materials …, 2024 - Elsevier
Achievement of ultra-high yield strength of above 400 MPa for rare-earth-free magnesium
(Mg) alloys is quite difficult via traditional thermal-mechanical processing. In this study, Mg …

[HTML][HTML] A comprehensive analysis on microstructure evolution of Mg-5.65 Zn-0.66 Zr alloy during hot deformation

Q Cheng, L Chen, J Tang, G Zhao, L Sun… - Journal of Magnesium and …, 2021 - Elsevier
The microstructure evolution of Mg-5.65 Zn-0.66 Zr (wt.%) alloy was studied based on the
hot compression tests. The results indicated that the flow stress increased rapidly to a peak …