Area of research
Mechanics of Materials · Biomedical Engineering
Research interest
Research focused on Shear modulus and Nonlinear system, with related work in Inverse problem, Finite element method, Discretization. Notable publications include 'Introducing regularization into the virtual fields method (VFM) to identify nonhomogeneous elastic property distributions', 'IMU-Assisted 2D SLAM Method for Low-Texture and Dynamic Environments', and 'On improving the accuracy of nonhomogeneous shear modulus identification in incompressible elasticity using the virtual fields method'.
FEniCS implementation of the Virtual Fields Method (VFM) for nonhomogeneous hyperelastic identification
Peel-off behavior of a double-plate adhesion system
Introducing regularization into the virtual fields method (VFM) to identify nonhomogeneous elastic property distributions
General Finite-Element Framework of the Virtual Fields Method in Nonlinear Elasticity
Design of optimized architected structures with exact size and connectivity via an enhanced multidomain topology optimization strategy
Adhesion behavior of an extensible soft thin film-substrate system based on finite deformation theory
Investigation of peeling mechanics of two adhered slender beams by an optimization-based approach
On improving the accuracy of nonhomogeneous shear modulus identification in incompressible elasticity using the virtual fields method
A Comparative Study of Direct and Iterative Inversion Approaches to Determine the Spatial Shear Modulus Distribution of Elastic Solids
A Size-Dependent Cost Function to Solve the Inverse Elasticity Problem
IMU-Assisted 2D SLAM Method for Low-Texture and Dynamic Environments
On improving the numerical convergence of highly nonlinear elasticity problems
Characterization of the stiffness distribution in two and three dimensions using boundary deformations: a preliminary study