Area of research
Mechanical Engineering · Materials Chemistry
Research interest
Research focused on Shock (circulatory) and Microstructure, with related work in Laser, Residual stress, Composite material. Notable publications include 'Study on the effect of laser peening with different power densities on fatigue life of fastener hole', 'Thickness effect in laser shock processing for test specimens with a small hole under smaller laser power density', and 'Fatigue life and fracture evolution of small-hole specimens by laser shock processing'.
Experimental and numerical optimization of a scroll expander for small-scale ORC systems using pure and mixture working fluids
Protective properties and enhanced corrosion resistance of TiNx-modified Fe-based amorphous composite coatings
Atomic Force Microscope, Nanoindentation, and Tribological Performances of Arc Ion‐Plated AlTiSiN and AlCrSiN Coatings under Dry‐Friction Condition
Multidimensional Optimization Strategies in Laser-Directed Energy Deposition: Enhancing Material Strength, Toughness, and Process Efficiency
Investigation of Residual Stress Distribution and Fatigue of 7050-T7451 Alloy Hole Components with Laser Shock and Ultrasonic Extrusion
316L Reinforced with Tungsten Carbide Particles by Laser-Directed Energy Deposition: Interface Microstructure and Friction-Wear Performance
Study on Characteristics of Ultrasound-Assisted Fracture Splitting for AISI 1045 Quenched and Tempered Steel
Study on the composite strengthening with laser shock processing and ultrasonic extrusion strengthening for small hole components
Fatigue life and fracture evolution of small-hole specimens by laser shock processing
Thickness effect in laser shock processing for test specimens with a small hole under smaller laser power density
Study on the effect of laser peening with different power densities on fatigue life of fastener hole