Area of research
Mechanical Engineering · Mechanics of Materials
Research interest
Research interests include Materials science, Finite element method, Welding, Residual stress, Recrystallization (geology), and Viscoelasticity.
A comprehensive comparison of modeling strategies and simulation techniques applied in powder-based metallic additive manufacturing processes
An efficient local moving thermal-fluid framework for accelerating heat and mass transfer simulation during welding and additive manufacturing processes
An experimental and numerical case study of thermal and mechanical consequences induced by laser welding process
Steady-state thermal model based on new dedicated boundary conditions – application in the simulation of laser powder bed fusion process
Impact of tungsten recrystallization on ITER-like components for lifetime estimation
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
Relevance of Indentation Test to Characterize Soft Biological Tissue: Application to Human Skin
Assessment of mechanical property gradients after impact-based surface treatment: application to pure α-iron
Aging effect on tactile perception: Experimental and modelling studies
Finite element analysis of the grain size effect on diffusion in polycrystalline materials
XFEM investigation of a crack path in residual stresses resulting from quenching
A simple and robust moving mesh technique for the finite element simulation of Friction Stir Welding