Hangzhou
China
Zhejiang University - Institute of Superalloys Science and Technology
Nickel-based single crystal superalloys, dislocation network, Creep, γ′ precipitate, phase transition, inhomogeneity
Nickel-based single crystal superalloys, TCP phases, Precipitation, In situ TEM, Phase separation
Mar-M247, bimodal γ′ phase structure, Grain boundary, Creep deformation mechanisms
Keywords: Titanium Alloys, Additive manufacturing, Phase modulation, Strength Enhancement, Fracture Mechanism
Nickel-based single crystal superalloys, intermetallics, Interfaces, Density functional theory
Titanium aluminide, Intermetallics, Microstructure evolution, Mechanical properties
SX superalloys, ITB, Plastic deformation, CPFE, Dislocation density
Single crystal superalloys, Microstructural stability, γ' phase, Coarsening rate, Cobalt.
Additive manufacturing, In-situ alloying, Titanium Alloys, Uniform ductility
GTD-111, Tensile, Carbide, Long-term exposed, DFT
Ni-based wrought superalloy, Heat treatment, η phase, tensile deformation
Titanium Aluminum, Boron Content, Grain Refinement, Strengthening Mechanism
Nickel-based single crystal, in-situ creep, circular hole, Digital Image Correlation (DIC), moderate-temperature high-stress
Nickel-based single crystal, in-situ tensile, cylindrical holes, Digital Image Correlation (DIC), secondary orientation
Superalloys, β-NiAl phase, Solidification, Microstructure
Single crystal superalloys, TCP phases, Thermodynamics, Cobalt