Thermal Stability of Microstructure of High-Entropy Alloys Based on Refractory Metals Hf, Nb, Ta, Ti, V, and Zr

被引:8
|
作者
Vlasak, Tomas [1 ]
Cizek, Jakub [1 ]
Melikhova, Oksana [1 ]
Lukac, Frantisek [1 ,2 ]
Preisler, Dalibor [3 ]
Janecek, Milos [3 ]
Harcuba, Petr [3 ]
Zimina, Mariia [4 ]
Srba, Ondrej [4 ]
机构
[1] Charles Univ Prague, Dept Low Temp Phys, V Holegovickach 2, Prague 18000 8, Czech Republic
[2] Inst Plasma Phys CAS, Meterials Engn Dept, Za Slovankou 3, Prague 18200, Czech Republic
[3] Charles Univ Prague, Dept Phys Mat, Ke Karlovu 5, Prague 12116, Czech Republic
[4] Ctr Vyzkumu Rez Sro, Hlavni 130, Husinec 25068, Czech Republic
关键词
high-entropy alloys; refractory metals; solid solution; SOLID-SOLUTION; IRRADIATION; RESISTANCE; HFNBTATIZR;
D O I
10.3390/met12030394
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In the present work, a series of high-entropy alloys based on refractory metals Hf, Nb, Ta, Ti, V, and Zr with various compositions have been systematically investigated. Our study revealed that a bcc single-phase solid solution of a Hf-Nb-Ta-Ti-V-Zr system is thermodynamically stable only at high temperatures above 1000 degrees C. At lower temperatures, the phase separation into disordered bcc phases with slightly different chemical compositions occurs. Despite the phase separation, a single-phase random solid solution can be saved at room temperature as a metastable phase by rapid cooling of the sample from high temperature. The microstructure of a single-phase metastable random solid solution was characterized and compared with the microstructure of the as-cast state. Furthermore, the mechanical properties of annealed and as-cast alloys were compared. Interestingly, both states exhibit comparable mechanical properties. It indicates that from the point of view of practical applications, a mechanical mixture of disordered bcc solutions is as good as single-phase random solid solution.
引用
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页数:19
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