Thermodynamically analyzing the formation of Mg^sub 12^Nd and Mg^sub 41^Nd^sub 5^ in Mg-Nd system under a static magnetic field

Influence of a static 1 T magnetic field on the phase formation and solidified microstructure of Mg-24 wt%Nd alloy at the cooling rates of 6 °C/min and 14 °C/min is studied. Metastable Mg12Nd appears at 14 °C/min and 0 T, while the equilibrium phase Mg41Nd5 is obtained at the same cooling rate and 1...

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Veröffentlicht in:Journal of alloys and compounds 2019-01, Vol.773, p.202
Hauptverfasser: Zhai, Cong, Luo, Qun, Cai, Qi, Guan, Renguo, Li, Qian
Format: Artikel
Sprache:eng
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Zusammenfassung:Influence of a static 1 T magnetic field on the phase formation and solidified microstructure of Mg-24 wt%Nd alloy at the cooling rates of 6 °C/min and 14 °C/min is studied. Metastable Mg12Nd appears at 14 °C/min and 0 T, while the equilibrium phase Mg41Nd5 is obtained at the same cooling rate and 1 T. The magnetic field induces the orientation of α-Mg dendrites and leads to the increase of compression strength of alloy (from 153 ± 3.6 to 167 ± 4.4 MPa). The contribution of magnetic field on Gibbs free energy is evaluated for the two phases. Combining with the CALPHAD method, transient nucleation theory and differential scanning calorimetry, the critical undercooling ΔTc for Mg12Nd and Mg41Nd5 is analyzed to understand the promotion effect of magnetic field on equilibrium Mg41Nd5. The ΔTc of Mg12Nd phase increases under 1 T magnetic field which is greater than that of Mg41Nd5 (11 °C) at the cooling rate of 14 °C/min.
ISSN:0925-8388
1873-4669
DOI:10.1016/j.jallcom.2018.09.203