Microstructure Simulation for Solidification of Magnesium–Zinc–Yttrium Alloy by Multi-phase-field Method Coupled with CALPHAD Database

The Mg–Zn–Y alloys show a good mechanical strength which can be achieved with the precipitation hardening by intermediate phases (X, W and I phase) in Mg solid solution (α phase). However, an accurate control of the microstructure formation is required in order to obtain good mechanical properties....

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Veröffentlicht in:ISIJ International 2010/12/15, Vol.50(12), pp.1914-1919
Hauptverfasser: Minamoto, Satoshi, Nomoto, Sukeharu, Hamaya, Atsushi, Horiuchi, Toshiaki, Miura, Seiji
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container_end_page 1919
container_issue 12
container_start_page 1914
container_title ISIJ International
container_volume 50
creator Minamoto, Satoshi
Nomoto, Sukeharu
Hamaya, Atsushi
Horiuchi, Toshiaki
Miura, Seiji
description The Mg–Zn–Y alloys show a good mechanical strength which can be achieved with the precipitation hardening by intermediate phases (X, W and I phase) in Mg solid solution (α phase). However, an accurate control of the microstructure formation is required in order to obtain good mechanical properties. In this study, experimental observations of microstructures of the Mg–Zn–Y system have been performed. Then we have focused on developing CALPHAD (CALculation of PHAse Diagrams) thermodynamic database to obtain the Gibbs free energy to draw phase diagram of the system and to understand the precipitation behavior of the intermediate phases. In order to understand the formation of microstructures, we have performed simulations of solidification of the alloy with use of multi-phase-field method. At the beginning the solidification process has been calculated for a large area, then the zoomed in region of the lamellar structures of the α phase and the W phase have been analyzed. Resulting optimum lamellar spacing reproduce experimental one well.
doi_str_mv 10.2355/isijinternational.50.1914
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subjects CALPHAD
magnesium alloy
phase field method
solidification
title Microstructure Simulation for Solidification of Magnesium–Zinc–Yttrium Alloy by Multi-phase-field Method Coupled with CALPHAD Database
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