127 YouYi Load
XiAn, Shaanxi 710072
China
Northwestern Polytechnic University (NPU) - State Key Laboratory of Solidification Processing
SSRN RANKINGS
in Total Papers Citations
Additive manufacturing, Inconel 718, Microstructure, Fatigue crack growth, Directed energy deposition
additive manufacturing, strain hardening, deformation substructure, mechanical properties
A. fracture behaviour, B. nickel alloys, C. laser methods, D. grains and interfaces.
laser directed energy deposition, Inconel 718, single crystal, melt pool, stray grain
laser powder bed fusion, Ni50.8Ti49.2, Anisotropy, Intelligent Properties, Structural Design
Directed energy deposition, AlSi10Mg alloy, Rapid solidification, Thermal cycle, Strength-ductility mechanisms
Laser powder bed fusion, Al-Li alloy, Microstructure, Crack, Mechanical property
Laser additive manufacturing (LAM), Ti6242S titanium alloy, High-temperature tensile property, High-temperature high-cycle fatigue property
Laser directed energy deposition, Near β titanium alloy, microstructure, Tensile Properties, fracture toughness.
laser powder bed fusion (LPBF), Ni50.8Ti49.2, shape memory alloys (SMA), texture, honeycomb structure
Selective laser melting, CoCrFeNiMn+TiB2 composite, Microstructures, mechanical properties, Strengthening mechanisms
316L stainless steel, equiaxed grain, ultrafine grain, heterogeneous structure, LPBF
316L stainless steel, LPBF, equiaxed grain, ultrafine grain, heterogeneous structure
Al-Mg-Mn-Sc-Zr alloy, Laser powder bed fuision, Ultrahigh strength-ductility performance, Microstructure
nickel-based superalloy, γ' and γ" phase, compact co-precipitated nanostructure, directed energy deposited
Pulsed Laser Direct energy deposition, additive manufacturing, Titanium matrix composite, TiC/Ti, Mechanical properties
SLM, Inconel 718, Trace elements, Boron-phosphorus interaction, Creep performance
Arc-DED, Al-Cu alloy, fracture toughness, Equiaxed/columnar heterogeneous microstructure, precipitates
Silicon nitride, Pre-Oxidation modification, carbothermal reduction-nitridation, Open porosity, Vat photopolymerization
Arc-Directed energy deposition, Al-Cu-Cd alloy, Cadmium precipitation behavior, Microstructure formation mechanism, High strength and ductility.
Keywords: Arc-Directed Energy Deposition, Al-Cu alloy, Impact toughness, Equiaxed/columnar heterogeneous microstructure, Fractography
Titanium alloy, Selective laser melting, In situ tensile test, Martensite decomposition, Deformation and ductility
Arc-Direct Energy Deposition (Arc-DED), Al-Cu alloy, fracture toughness, equiaxed/columnar heterogeneous microstructure, precipitates
Si3N4, AlN hydrolysis, Vat Photopolymerization, Powder modification, SiAlON
Laser directed energy deposition, WNiFe alloy, Tungsten heavy alloys, Microstructure, crack, mechanical property
Laser Powder-Bed Fusion, Titanium alloy, martensite decomposition, thermal cycling, Microstructural evolution
L-DED, NiCoCr Medium-entropy alloy, microstructure, Deformation behavior, Cr content
nanotwinned Cu, nanograin size, nanotwin thickness, Hall-Petch relation, yield strength
Additive manufacturing, Mg-Gd-Y-Zn-Zr alloy, Microstructure, Mechanical properties
Electrochemical transpassive dissolution, laser-directed energy deposition, surface morphology, oxide film characteristics, Ti6Al4V alloy
Laser Directed Energy Deposition (L-DED), Ti60-Ti2AlNb Functionally Graded Materials, compositional distribution, Microstructural evolution, mechanical properties
Selective laser melting, Ti2AlNb alloy, O phase, Heat treatment
12CrMoV steel, superalloy coating, CMT arc cladding, Microstructure, oxidation resistance
Heterogeneous Microstructure, Arc-Direct Energy Deposition, Split-Hopkinson, Dynamic impact compression performance, deformation mechanism
Laser powder bed fusion, Zircaloy-4 alloy, Laser energy density, Microstructure, mechanical properties
Laser directed energy deposition, static magnetic field, Mechanical property, microstructure, Additive manufacturing
Electrochemical machining, Ti6Al4V alloy, passivation film, electrolyte effects, Surface Roughness, transpassive dissolution