Synergy of Ni micro-alloying and thermomechanical processing in Al–Mg–Si–Cu–Zn–Fe–Mn alloys with enhanced bendability

Journal Article (2021)
Authors

Bo Yuan (University of Science and Technology Beijing)

G. Li (TU Delft - Team Maria Santofimia Navarro)

Mingxing Guo (University of Science and Technology Beijing)

L.Z. Zhuang (University of Science and Technology Beijing)

Research Group
Team Maria Santofimia Navarro
Copyright
© 2021 Bo Yuan, G. Li, Mingxing Guo, Linzhong Zhuang
To reference this document use:
https://doi.org/10.1016/j.jmrt.2021.10.112
More Info
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Publication Year
2021
Language
English
Copyright
© 2021 Bo Yuan, G. Li, Mingxing Guo, Linzhong Zhuang
Research Group
Team Maria Santofimia Navarro
Volume number
15
Pages (from-to)
5059-5077
DOI:
https://doi.org/10.1016/j.jmrt.2021.10.112
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Abstract

Synergy of Ni micro-alloying and thermomechanical processing on the phase distribution, formability and bendability of Al–Mg–Si–Cu–Zn–Fe–Mn alloys was systematically studied in this paper. With the addition of micro-alloying Ni, the Ni-containing Fe-rich phase can be formed, which not only serves as nucleation sites of Mg–Si precipitates (such as, Q phase) during the casting process, but also improves the uniform distribution level of Fe-rich phases after homogenization. The formability and bendability of Ni-containing alloy can be both improved to a certain level due to the positive effect of Ni micro-alloying. In comparison, if increasing the cold rolling deformation between hot rolling and annealing, the distribution of multi-scale Fe-rich phases can be significantly improved based on the synergy of Ni micro-alloying and thermomechanical processing. And finally, this improvement further results in the great improvements in the microstructure, texture, formability (average r = 0.688, △r = −0.09) and bendability of the alloy together. Based on the microstructure evolution, the synergy mechanism of Ni micro-alloying and thermomechanical processing is put forward in this paper.