30 Xueyuan Road, Haidian District
Beijing, 100083
China
University of Science and Technology Beijing - Beijing Advanced Innovation Center for Materials Genome Engineering
All-solid-state lithium batteries, Sulfide electrolytes, Ni-rich layered oxide, Interfacial engineering, Buffer layer
Refractory high entropy alloys, Powder metallurgy, mechanical property, Ultrafine-grained materials, In situ precipitation
Powder metallurgy, Mechanical property, Refractory high entropy alloys, Ultrafine-grained materials, In-situ precipitation
refractory high-entropy alloys, Mechanical properties, Machine learning, Thermodynamic calculation
Refractory high-entropy alloys, Mechanical properties, Machine Learning, Thermodynamic calculation
Thermal contact resistance, Metal matrix composites, Copper, Carbon nanotubes, Sintering
Diamond/Cu, First-principle simulations, Interface wetting, Electronic structure
Refractory High Entropy Alloys, powder metallurgy, mechanical properties, Ultrafine-grained materials, In situ precipitation
oxide dispersion strengthening, spark plasma sintering, Microstructure and mechanical properties, Strengthening mechanism
Ductility deterioration, L21-Ni2AlTi phase, L21-Ni2AlTi/BCC-Fe interface, First-principles Calculations, Cleavage energy
PEMFC, Three-dimensional model, Flow field, mass transfer, Power density
Rhenium, Cold rolling, twinning, Twin-twin interaction, Shear Bands, work hardening
Nb-Ti alloy, Nb-Ti-Ni filler alloy, shear strength, microstructure evolution, isothermal solidification
M42 high-speed steel, carbide inhomogeneity, forging, Machine learning, mechanical properties
Ni-based superalloys, Surface structure, Oxide layer thickness, Oxidation behavior, Elements distribution
porous tungsten, binder jet printing, jet milling, pore characteristics
Si3N4 ceramic, active metal, wetting, First-principles calculation
Diamond/SiC, Phase content, Thermal conductivity
composite materials, metal matrix composites, sintering, heat conduction
Rhenium, Compression, Twinning, Hardening
Ni-based superalloys, Surface structure, Carbides, Oxide film
W-Re alloys, Second-phase dispersion strengthening, Nitridation-decomposition, in-situ synthesis
H2 oxidation, ZrVFeTi alloy, Pt-Pd, Bimetallic catalyst, Activity
Diamond/SiC, Diamond content, Thermal conductivity.
Diamond/SiC, Forming pressure, Thermal conductivity.