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Achieving high-strain-rate and low-temperature superplasticity in an ECAP-processed Mg-Y-Er-Zn alloy via Ag addition.

Authors :
Wu, Haoran
Jiang, Jinghua
Yang, Zhenquan
Li, Mengjia
Huang, He
Ge, Ningfei
Ma, Aibin
Liu, Huan
Source :
Journal of Magnesium & Alloys; Oct2023, Vol. 11 Issue 10, p3765-3778, 14p
Publication Year :
2023

Abstract

The effect of adding a small amount of Ag on the microstructure evolution and superplastic properties of Mg-Y-Er-Zn (WEZ612) alloys was systematically studied. The basal texture of the refined WEZ612 alloy produced by equal channel angular pressing was altered to a non-basal structure upon the addition of Ag. Ag addition also refined the grain size and promoted the formation of a large number of nano-14H-long period stacking ordered phases. Using high-resolution transmission electron microscopy, many nano-precipitated phases were detected on the basal plane of the Mg-Y-Er-Zn-1Ag (WEZ612–1Ag) alloy, The nano-precipitated phases on the basal plane improved the thermal stability of the alloy, lowered the deformation activation energy (Q), and improved the stress sensitivity index (m). At 523 K with a strain rate of 10<superscript>−2</superscript> s<superscript>−1</superscript>, the Q value of WEZ612 was higher than that of WEZ612–1Ag (299.14 and 128.5 kJ mol<superscript>−1</superscript>, respectively). In contrast, the m value of the WEZ612 alloy (0.16) was lower than that of the WEZ612–1Ag alloy (0.46). At 623 K with a tensile rate of 10<superscript>−2</superscript> s<superscript>−1</superscript>, the WEZ612 and WEZ612–1Ag alloys were elongated by 182% and 495%, respectively, with the latter exhibiting high-strain-rate and low-temperature superplasticity. The improved superplasticity of the WEZ612-1Ag alloy is attributed to the nano-precipitated phases, which effectively limit the cavity extension during superplastic deformation. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
22139567
Volume :
11
Issue :
10
Database :
Supplemental Index
Journal :
Journal of Magnesium & Alloys
Publication Type :
Academic Journal
Accession number :
173967148
Full Text :
https://doi.org/10.1016/j.jma.2022.03.003