100 Ping Le Yuan
Chaoyang District
Beijing, Beijing 100020
China
Initial oxidation, In situ, ETEM, Third-generation superalloy, Nickle-based
Superalloy, Oxidation, Rhenium, Interface segregation, Transmission electron microscopy
Oxidation, NiCr alloy, Chromium, In situ, Transmission electron microscope
hydrogen embrittlement, Ni-based single crystal superalloy, dislocation, Voids, Fracture mechanism
Microstructural degradation, Superalloy, Turbine blade, Failure analysis, Defects
Hypergravity, interface, Diffusion, intermetallic phases
Hypergravity, interface, diffusion, intermetallic phases
Ni-based SX superalloy, hydrogen embrittlement, Hydrogen trapping, Hydrogen-induced cracking
X-ray, Phase contrast, Imaging, Grating, Laboratory X-ray source
Ni-based SX superalloy, Hydrogen embrittlement, Hydrogen trapping, Hydrogen-induced cracking
Stainless steels, In situ, TEM, Oxidation, Microstructure
CuSn, diffusion couple, Interface, In situ, TEM
Inconel 718, Grain boundary, Intergranular oxidation, In situ, ETEM
Superalloys, Interfaces, Microstructure, Oxidation, In situ
Hypergravity, High-speed rotation, Aluminium, Cracking, Microstructure
Stainless steel, In situ, ETEM, Oxidation, Atomic scale
Tensile strain, Compressive strain, Inconel 718 superalloy, Oxidation, Grain boundary
Tensile force, Compression force, Inconel 718 superalloy, Oxidation, Grain boundary
High-speed rotation, Aluminum, Creep, Fatigue, Microstructure
High-speed rotation, Characterization mode, creep, fatigue, Microstructure
Hypergravity, 7075 aluminium alloy, Microstructure, Thermal crack, High-speed rotation
oxidation, Atomic structure, AuCu alloy, In situ, Environmental transmission electron microscopy
Size dependent, In situ, ETEM, Crystallization
AuCu alloy, oxidation, ETEM, Atomic scale, Nucleation