Area of research
Mechanics of Materials · Materials Chemistry
Research interest
Research interests include Materials science, Composite material, Glaze, Nanoindentation, Indentation, and Tribology.
Optical, electrical and mechanical properties of TiN thin film obtained from a TiO2 sol-gel coating and rapid thermal nitridation
Understanding and formalization of the fretting-wear behavior of a cobalt-based alloy at high temperature
Effects of temperature and addition of zinc carboxylate to grease on the tribological properties of PA66 in contact with carbon steel
The formation of a cobalt-based glaze layer at high temperature: A layered structure
A combined friction energy and tribo-oxidation formulation to describe the high temperature fretting wear response of a cobalt-based alloy
The role of β-titanium ligaments in the deformation of dual phase titanium alloys
Investigation on mechanical properties of tribofilm formed on Ti–6Al–4V surface sliding against a DLC coating by nano-indentation and micro-pillar compression techniques
Nanomechanical testing at high strain rates: New instrumentation for nanoindentation and microcompression
A tribo-oxidation abrasive wear model to quantify the wear rate of a cobalt-based alloy subjected to fretting in low-to-medium temperature conditions
Microstructural and micromechanical investigations of surface strengthening mechanisms induced by repeated impacts on pure iron
In situ characterization of AA1050 recrystallization kinetics using high temperature nanoindentation testing
Brittle to ductile transition of tribomaterial in relation to wear response at high temperatures
Micromechanics of Amorphous Metal/Polymer Hybrid Structures with 3D Cellular Architectures: Size Effects, Buckling Behavior, and Energy Absorption Capability
Perfectly plastic flow in silica glass
Assessment of mechanical property gradients after impact-based surface treatment: application to pure α-iron
Determination of mechanical properties by nanoindentation independently of indentation depth measurement