Area of research
Aerospace Engineering · Materials Chemistry
Research interest
Research interests include High-Temperature Coating Behaviors, High-Velocity Impact and Material Behavior, Advanced ceramic materials synthesis, and Advanced materials and composites.
Suppressed ballistic transport of dislocations at strain rates up to 109 s–1 in a stable nanocrystalline alloy
Quantifying dislocation drag at high strain rates with laser-induced Microprojectile impact
Strength gradient in impact-induced metallic bonding
Surface oxide layer strengthening and fracture during flattening of powder particles
High-velocity micro-projectile impact testing
A Review of the Mechanical and Tribological Behavior of Cold Spray Metal Matrix Composites
Particle size effects in metallic microparticle impact-bonding
Microparticle impact-bonding modes for mismatched metals: From co-deformation to splatting and penetration
Surface oxide and hydroxide effects on aluminum microparticle impact bonding
CoCrNi matrix high-temperature wear resistant composites with micro- and nano-Al2O3 reinforcement
Effect of Ni, W and Mo on the microstructure, phases and high-temperature sliding wear performance of CoCr matrix alloys
Material hardness at strain rates beyond 106 s−1 via high velocity microparticle impact indentation
In-situ Studies of Erosion in Ultrafine-Grained and Nanocrystalline Metals
Studies of Dislocation Drag at High Strain Rates with Laser-Induced Micro-projectile Impact
Collaborative Research: Solid-State Additive Manufacturing of Metal Matrix Composites via Cold Spray
CAREER: Understanding Bond Formation, Microstructural Development and Mechanical Properties in Cold Spray Additive Manufacturing – A Unified Experimental and Numerical Approach