2012
DOI: 10.1016/j.actamat.2012.05.035
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Phase equilibria and transformations in ternary Mg-rich Mg–Y–Zn alloys

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Cited by 191 publications
(86 citation statements)
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“…The 18R phase is observed predominantly in the as-cast microstructure of Mg-Y-Zn alloys. Both the accumulated experimental evidence and the calculated Mg-YZn phase diagram shown in Figure 27 [224] indicate that 18R is not thermodynamically stable at temperatures below 773 K (500°C); it is gradually replaced by 14H after prolonged heat treatment at 623 K to 773 K (350°C to 500°C).…”
Section: Mg-y-zn Alloysmentioning
confidence: 99%
“…The 18R phase is observed predominantly in the as-cast microstructure of Mg-Y-Zn alloys. Both the accumulated experimental evidence and the calculated Mg-YZn phase diagram shown in Figure 27 [224] indicate that 18R is not thermodynamically stable at temperatures below 773 K (500°C); it is gradually replaced by 14H after prolonged heat treatment at 623 K to 773 K (350°C to 500°C).…”
Section: Mg-y-zn Alloysmentioning
confidence: 99%
“…4) Previously proposed sublattice models in literature for the YZn 5 and H phases are listed in Table 5.…”
Section: H Phasementioning
confidence: 99%
“…17) The Gibbs energy of LPSO phase, G 0;LPSO Mg:Y:Zn , in MgYZn system is available from thermodynamic Gibbs energy parameter determined by Calphad approach, 17) and G 0;LPSO Mg:Y:Zn is divided into four energies: G c , E grad , E str and E sf , because we consider the LPSO compound phase in this study. Therefore, the energy balance for LPSO single phase provides Z…”
Section: )mentioning
confidence: 99%