92 West Dazhi Street
Nan Gang District
Harbin, 150001
China
Harbin Institute of Technology
additive manufacturing, Wire-based friction stir additive manufacturing, Aluminum alloys, Large-size complex structures, Mechanical properties
Friction stir additive manufacturing, Pre-plasticization, Material flow, Microstructural Evolution, mechanical properties
Aluminum-air batteries, Severe plastic deformation, Anodes, Corrosion
battery recycling, Li-Garnet, Solid-state electrolyte, Solid-state battery
Aluminum-air batteries, composites, Anodes, Passivation, Corrosion
Surface treatment, Li-Garnet, Solid-state electrolyte, Solid-state battery
surface treatment, Li-Garnet, solid-state electrolyte, solid-state battery
Aluminum alloys, In-situ rolling friction stir welding, Corrosion, Stress corrosion cracking, Density function theory
Wire-based friction stir additive manufacturing, Aluminum matrix composite, Interlayer, Microstructure, Mechanical properties
Nano TiB2/2024 Al composite, Friction stir lap weld, Stepped-pin, Microstructural evolution, Tensile shear strength, Fracture mechanisms
Magnesium alloys, Friction stir additive manufacturing, Continuous feeding, Mechanical properties
Dynamic support friction stir lap welding, Mg-Li/Al heterogeneous joint, Interface evolution, Mechanical properties
Dynamic support friction stir lap welding, Mg-Li/Al heterogeneous joint, Interface evolution, mechanical properties
welding, Microstructure, Al-Zn-Mg-Cu alloy, Multi-pass friction stir welding, Periodic sub-grain structure, Strain hardening behavior
Aluminum Alloys, In-situ rolling friction stir welding, Corrosion, Stress corrosion cracking, Density function theory
Keywords: Friction stir lap welding, TiB2/2024 aluminum matrix composite, microstructural evolution, corrosion behavior.
Friction stir additive manufacturing, Aluminum-matrix composites, TiN-coated wires, Grain refinement
High entropy alloy, Deformation-driven metallurgy, composite, corrosion, Passivation film