Beijing
China
Beijing University of Technology - Institute of Microstructure and Properties of Advanced Material
SSRN RANKINGS
in Total Papers Citations
Nickel-based single crystal superalloys, dislocation network, Creep, γ′ precipitate, phase transition, inhomogeneity
Low stacking-fault energy alloys, Dislocation source, Twin structure, Interface, Mechanical property
3D characterization, Nanocrystalline material, Grain boundary, Disconnection loop, In situ transmission electron microscopy (TEM)
transmission electron microscopy (TEM), metallic glass, dislocation, phase transformations, strain-induced amorphization
Nickel-based single crystal superalloys, TCP phases, Precipitation, In situ TEM, Phase separation
In-situ SEM, High temperature, Tungsten filament, Secondary-electron detector, Crystallization
Polycrystalline materials, Grain boundary, Triple junction reconstruction, Coordinated deformation, Deformation twin, In situ transmission electron microscopy (TEM)
Inconel 718 superalloy, δ phase, plastic Deformation, grain boundary misorientation, grain boundary
NiTi, shape memory alloy, martensitic transformation, pseudoelasticity, Composite, damping
Nanocrystalline materials, Triple junction, Grain boundary, Disconnection, Excess volume, In situ transmission electron microscopy (TEM)
Mar-M247, bimodal γ′ phase structure, Grain boundary, Creep deformation mechanisms
digital image correlation (DIC), speckle pattern, in-situ SEM, multi-scale strain analysis, EBSD
Scanning electron microscope, Image denoising, Mathematical-knowledge-driven noise modeling
Nickel alloys, Impurity embrittlement, Sulfur segregation, STEM, DFT
Keywords: Titanium Alloys, Additive manufacturing, Phase modulation, Strength Enhancement, Fracture Mechanism
Eutectic high-entropy alloys, Heterostructure, Hetero-deformation-induced (HDI) hardening, Mechanical properties.
Nickel-based single crystal superalloys, intermetallics, Interfaces, Density functional theory
in-situ, Grain boundary angle, Inconel 718, CPFEM, Slip transfer
Titanium aluminide, Intermetallics, Microstructure evolution, Mechanical properties
Deep learning, Predictive recurrent neural network, Grain evolution, In-situ EBSD
Zirconium alloy, In-situ SEM-EBSD observation, Schmid's law, Slip trace analysis, Twin nucleation and growth
Inconel 718 alloy, In-situ EBSD, Tensile test, Grain boundary evolution
In-situ low-cycle fatigue, Elevated-temperature, Superalloy, Digital image correlation, Crystal plasticity finite element
Nickel-based single crystal superalloys, Creep, Size effects, Dislocations, TEM
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
in-situ tensile, SLM GH3536, Heat Treatment, twin, Serrated grain boundaries
In-situ TEM, Thermal and Mechanical Testing Holder, High resolution TEM, Nickel-based Superalloy DD6, fracture
GTD-111, Tensile, Carbide, Long-term exposed, DFT
Ni-based wrought superalloy, Heat treatment, η phase, tensile deformation
Superalloy, High temperature, low centrifugal stress, γ-γ' phase structure, Dislocation, subgrain
Titanium Aluminum, Boron Content, Grain Refinement, Strengthening Mechanism
Zirconium alloy, Schmid factor, Geometric compatibility, Twin pairs, Twin variants
Nickel-based single crystal, in-situ creep, circular hole, Digital Image Correlation (DIC), moderate-temperature high-stress
Superalloys, β-NiAl phase, Solidification, Microstructure
Nickel-based single crystal, in-situ tensile, cylindrical holes, Digital Image Correlation (DIC), secondary orientation
Film cooling hole (FCH), Coupling effect of high speed and temperature, Single crystal superalloy component, Low cycle fatigue, Failure
Ni-based superalloys, Ru element, Creep life, Repeatability, Microstructure
Single crystal superalloy, Re segregation, Ru addition, Low-cycle fatigue
Directed energy deposition, Discontinuously reinforced titanium matrix composites, Network architecture, Lanthanum hexaboride
Centrifugal stress, Single crystal superalloy, microstructure, High-speed rotation
Titanium Matrix Composites, Additive manufacturing, Network architecture, High-Temperature performance, Strain Partitioning
Single crystal superalloys, TCP phases, Thermodynamics, Cobalt