共 62 条
- [1] Zuo T T, Gao M C, Ouyang L Z, Et al., Tailoring magnetic behavior of CoFeMnNiX (X=Al, Cr, Ga, and Sn) high entropy alloys by metal doping, Acta Mater, 130, (2017)
- [2] Li Z, Bai G H, Liu X G, Et al., Tuning phase constitution and magnetic properties by composition in FeCoNiAlMn high-entropy alloys, J Alloys Compd, 845, (2020)
- [3] Huang S, Li W, Li X Q, Et al., Mechanism of magnetic transition in FeCrCoNi-based high entropy alloys, Mater Des, 103, (2016)
- [4] Nagase T, Anada S, Rack P D, Et al., MeV electron-irradiation-induced structural change in the bcc phase of Zr-Hf-Nb alloy with an approximately equiatomic ratio, Intermetallics, 38, (2013)
- [5] Kim J, Lim J W, Kim J K, Et al., Suppressed radiation-induced dynamic recrystallization in CrFeCoNiCu high-entropy alloy, Scripta Mater, 190, (2021)
- [6] Guo H X, He C Y, Qiu X L, Et al., A novel multilayer high temperature colored solar absorber coating based on high-entropy alloy MoNbHfZrTi: Optimized preparation and chromaticity investigation, Sol Energy Mater Sol Cells, 209, (2020)
- [7] Vrtnik S, Kozelj P, Meden A, Et al., Superconductivity in thermally annealed Ta-Nb-Hf-Zr-Ti high-entropy alloys, J Alloys Compd, 695, (2017)
- [8] Shen H H, Hu J T, Li P C, Et al., Compositional dependence of hydrogenation performance of Ti−Zr−Hf−Mo−Nb high-entropy alloys for hydrogen/tritium storage, J Mater Sci Technol, 55, (2020)
- [9] Wei Y G, Guo G, Li J, Et al., Application of refractory high entropy alloys on aero-engines, J Aeron Mater, 39, 5, (2019)
- [10] Waseem O A, Ryu H J., Combinatorial development of the low-density high-entropy alloy Al<sub>10</sub>Cr<sub>20</sub>Mo<sub>20</sub>Nb<sub>20</sub>Ti<sub>20</sub>Zr<sub>10</sub> having gigapascal strength at 1000 ℃, J Alloys Compd, 845, (2020)