We present a novel unified finite element framework for performing computationally efficient large strain implicit and explicit elastodynamic simulations using triangular and tetrahedral meshes that can be generated using the existing mesh generators. For the development of a unified framework, we use Bézier triangular and tetrahedral elements which are directly amenable for explicit schemes using lumped mass matrices, and employ a mixed displacement-pressure formulation for dealing with the numerical issues arising due to volumetric and shear locking. We demonstrate the accuracy of the proposed scheme by studying several challenging benchmark problems in finite strain elastostatics and nonlinear elastodynamics modelled with nearly incompre...
summary:The tetrahedral stress element is introduced and two different types of a finite piecewise l...
A finite-strain tetrahedron with continuous stresses is proposed and analyzed. The complete stress t...
This thesis introduces a three-dimensional (3D) finite element (FE) formulation to model the linear ...
We present a novel unified finite element framework for performing computationally efficient large s...
In this paper, we present novel techniques of using quadratic Bézier triangular and tetrahedral elem...
International audienceWe introduce an innovative formulation for simple linear tetrahedral elements ...
In this paper two plane strain quadrilateral elements with two and four variables, are proposed. The...
The simulation of incompressible materials suffers from locking when using the standard finite eleme...
AbstractAn alternative alpha finite element method (AαFEM) using triangular elements is proposed tha...
A finite strain finite element (FE)-based approach to element-free Galerkin (EFG) discretization is ...
When improving the current state of technology in the finite element method, element formulation is ...
We present the five field mixed finite element formulation introduced by Armero and extend it to 3D ...
Non-linear hyperelastic response of reinforced elastomers is modeled using a novel three-dimensional...
The simulation of structural problems involving the deformations of volumetric bodies is of paramoun...
We present a robust and efficient form of the smoothed finite element method (S-FEM) to simulate hyp...
summary:The tetrahedral stress element is introduced and two different types of a finite piecewise l...
A finite-strain tetrahedron with continuous stresses is proposed and analyzed. The complete stress t...
This thesis introduces a three-dimensional (3D) finite element (FE) formulation to model the linear ...
We present a novel unified finite element framework for performing computationally efficient large s...
In this paper, we present novel techniques of using quadratic Bézier triangular and tetrahedral elem...
International audienceWe introduce an innovative formulation for simple linear tetrahedral elements ...
In this paper two plane strain quadrilateral elements with two and four variables, are proposed. The...
The simulation of incompressible materials suffers from locking when using the standard finite eleme...
AbstractAn alternative alpha finite element method (AαFEM) using triangular elements is proposed tha...
A finite strain finite element (FE)-based approach to element-free Galerkin (EFG) discretization is ...
When improving the current state of technology in the finite element method, element formulation is ...
We present the five field mixed finite element formulation introduced by Armero and extend it to 3D ...
Non-linear hyperelastic response of reinforced elastomers is modeled using a novel three-dimensional...
The simulation of structural problems involving the deformations of volumetric bodies is of paramoun...
We present a robust and efficient form of the smoothed finite element method (S-FEM) to simulate hyp...
summary:The tetrahedral stress element is introduced and two different types of a finite piecewise l...
A finite-strain tetrahedron with continuous stresses is proposed and analyzed. The complete stress t...
This thesis introduces a three-dimensional (3D) finite element (FE) formulation to model the linear ...