Chinese Academy of Sciences
Beijing, 100190
China
Chinese Academy of Sciences (CAS)
Ni-based superalloy, stress-aging, carbides degradation, microstructure evolution
Ni3Al-based superalloys, Al-Ti ratio, microstructure, creep, strengthening mechanism
Ni-based superalloy, selective laser melting, Thermal exposure, microstructure evolution, Mechanical property
Ni-based superalloy, long-term stress aging, microstructure evolution, TCP phase, threshold stress mold.
Ni3Al-based superalloys, Al-Ti ratio, Microstructure, Creep, strengthening mechanism
Hafnium, Ni-based superalloy, Tensile strength, δ phase, Microstructure
Ni3Al-based superalloys, Al/Ti ratio, Microstructure, creep, strengthening mechanism
Ni3Al-based single crystal superalloy, heat treatment, microstructural evolution, stress-rupture performance, strengthening mechanism
Ni3Al-based superalloy, Re, microstructure, Creep, dislocation network
Ni3Al-based superalloys, Al/Ti ratio, Microstructure, Creep, Strengthening mechanism
Ni3Al-based superalloy, Long-term aging, Re, σ phase, recovery heat treatment
Ni3Al-based superalloy, Aging, Re influence, γ′ coarsening kinetic mechanism, limiting-rate elements