Shanghai
China
East China University of Science and Technology (ECUST) - Key Laboratory of Pressure Systems and Safety
Medium-entropy alloy, Additive Manufacturing, Heat treatment, Strengthening mechanism, Microstructural evolution
Gradient nanostructure, pure titanium, microstructural evolution, Strengthening mechanism, high-cycle fatigue
Phase transformation, Hydrogen embrittlement, Additive Manufacturing, High-Entropy Alloy, TiC precipitates
Brazing filler, BNi-2, wettability, Thermophysical properties, Creep properties, Thermodynamic simulation.
316H welded joint, High temperature in-situ tensile tests, Crystal plasticity finite element model, Deformation mechanisms
Medium-entropy alloys, Molecular Dynamics, Local chemical ordering, Twin boundary, Strengthening mechanism, Nanoindentation
Life prediction, Symbolic regression, fatigue, Creep-fatigue, Physical interpretability
hydrogen-assisted fatigue, Fatigue life prediction, low-cycle fatigue, damage accumulation, hydrogen–fatigue interaction
High dynamic range, geometric modulation, Stripe projection, intensity inpainting
Multiaxial creep, Multiaxial stress rupture criterion, Equivalent conversion, Skeletal point, Principal stress sign
P92 steel, creep, fatigue, Oxidation, Vacuum, Damage mechanism
gradient lamellar microstructure, strain rate sensitivity, in-situ compression test, plastic deformation
Fatigue and creep-fatigue, Structural reliability, Surrogate Model, Data-physics coupling, Full-life-cycle reliability prediction, 3D turbine disk