Effects of Mg17Al12 second phase particles on twinning-induced recrystallization behavior in Mg–Al–Zn alloys during gradient hot rolling
来源期刊:JOURNAL OF MATERIALS SCIENCE TECHNOLOG2019年第9期
论文作者:Zhong-Zheng Jin Xiu-Ming Cheng Min Zha Jian Rong Hang Zhang Jin-Guo Wang Cheng Wang Zhi-Gang Li Hui-Yuan Wang
文章页码:2017 - 2026
摘 要:This study aims to investigate the promotion effect of twinning-induced nucleation vs the inhibition effect of Mg17Al12particles pinning for recrystallization,achieved through gradient rolling for Mg-3 Al-1 Zn(AZ31)and Mg-9 Al-1 Zn(AZ91)alloys as well as pure Mg.Through gradient rolling,a transition zone from the initial to deformed microstructure undergoing varying thickness reductions was obtained in the same sample,where the evolution of deformation twins and second phase can be examined precisely and continuously.During hot deformation,dynamic recrystallized(DRXed)grains tended to originate from {101 1 }-{10 1 2} double twins,whose nucleation was significantly restricted by increasing Al content and hence recrystallization can be rarely triggered in AZ91 alloy.Concurrently,the size and volume fraction of Mg17Al12particles changed via dissolution and re-precipitation,leading to finer average size and higher volume fraction,which produced stronger pinning effect and hindered dynamic recrystallization significantly.The current study provides insights into the mechanisms responsible for dynamic recrystallization behavior during hot rolling in Mg-Al-Zn alloys.
Zhong-Zheng Jin1,2,Xiu-Ming Cheng2,Min Zha1,2,Jian Rong2,Hang Zhang2,Jin-Guo Wang2,Cheng Wang2,Zhi-Gang Li2,Hui-Yuan Wang1,2,3
1. State Key Laboratory of Superhard Materials, Jilin University2. Key Laboratory of Automobile Materials of Ministry of Education & School of Materials Science and Engineering, Nanling Campus, Jilin University3. International Center of Future Science, Jilin University
摘 要:This study aims to investigate the promotion effect of twinning-induced nucleation vs the inhibition effect of Mg17Al12particles pinning for recrystallization,achieved through gradient rolling for Mg-3 Al-1 Zn(AZ31)and Mg-9 Al-1 Zn(AZ91)alloys as well as pure Mg.Through gradient rolling,a transition zone from the initial to deformed microstructure undergoing varying thickness reductions was obtained in the same sample,where the evolution of deformation twins and second phase can be examined precisely and continuously.During hot deformation,dynamic recrystallized(DRXed)grains tended to originate from {101 1 }-{10 1 2} double twins,whose nucleation was significantly restricted by increasing Al content and hence recrystallization can be rarely triggered in AZ91 alloy.Concurrently,the size and volume fraction of Mg17Al12particles changed via dissolution and re-precipitation,leading to finer average size and higher volume fraction,which produced stronger pinning effect and hindered dynamic recrystallization significantly.The current study provides insights into the mechanisms responsible for dynamic recrystallization behavior during hot rolling in Mg-Al-Zn alloys.
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