220 B RP
Boston, MA 02115
United States
Northeastern University (USA)
Titanium alloy, In situ tensile, Bimodal microstructure, Slip activity, fracture mechanism
TB18 titanium alloy, High-cycle Fatigue, crack initiation, Fatigue damage
Ti-6.9Al-6.8Zr-2.3Mo-2.2V alloy, Additive Manufacturing, α phase, Deformation mechanism
Laser cladding, Ti-5321 alloy, BASCA, Fatigue crack growth, Crack propagation mechanism
Laser cladding forming, Ti-5321 alloy, Multiple heat treatments, Fatigue crack growth
laser cladding, damage tolerance performance, Ti-5321 alloy, slip systems
Keywords: metastable β titanium alloy, in situ tensile, single slip, cross-slip, slip system activation, slip transfer
variant selection, cooling rate, α/α boundary, dislocation
Low-cost titanium alloy, Microstructure, Impact toughness, High-density twin, Stack faults