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Dual-scale phase-field simulation of Mg-Al alloy solidification

A. Monas, O. Shchyglo, D. Höche, M. Tegeler, I. Steinbach

IOP Conference Series: Materials Science and Engineering, 84, 012069, (2015)

DOI: doi:10.1088/1757-899X/84/1/012069

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Phase-field simulations of the nucleation and growth of primary α-Mg phase as well as secondary, β-phase of a Mg-Al alloy are presented. The nucleation model for α- and β-Mg phases is based on the “free growth model” by Greer et al.. After the α-Mg phase solidification we study a divorced eutectic growth of α- and β-Mg phases in a zoomed in melt channel between α-phase dendrites. The simulated cooling curves and final microstructures of α-grains are compared with experiments. In order to further enhance the resolution of the interdendritic region a high-performance computing approach has been used allowing significant simulation speed gain when using supercomputing facilities.

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{"type":"inproceedings", "name":"a.monas20157", "author":"A. Monas and O. Shchyglo and D. Höche and M. Tegeler and I. Steinbach", "title":"Dualscale phasefield simulation of MgAl alloy solidification", "journal":"IOP Conference Series: Materials Science and Engineering", "volume":"84", "OPTnumber":"1", "OPTmonth":"7", "year":"2015", "OPTpages":"012069", "OPTnote":"", "OPTkey":"", "DOI":"doi:10.1088/1757-899X/84/1/012069"}
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