International audienceA novel multi-fiber beam finite element formulation based on the Timoshenko model is proposed in this paper to simulate failure of reinforced concrete structural elements subjected to static monotonic loadings. The beam section can have an arbitrary shape and each fiber has a local constitutive law representing a specific material. The embedded discontinuity concept is adopted to enrich the displacement field of the fibers in order to describe the opening of cracks and the development of plastic hinges. The material behavior at the discontinuity is characterized by a cohesive law linking the axial stress and the displacement jump by a linear relation, which allows capturing the released fracture energy. The variational...
The paper presents a new methodology to model material failure, in two-dimensional reinforced concre...
Experimental research has pointed out that fibre reinforcement gives valuable contribution for the s...
A three-dimensional fiber-based frame element accounting for multiaxial stress conditions in reinfor...
International audienceA novel multi-fiber beam finite element formulation based on the Timoshenko mo...
International audienceAn enhanced high order multifiber Timoshenko beam is introduced to simulate st...
International audienceAn enhanced high order multifiber Timoshenko beam is introduced to simulate st...
This thesis, carried out within the framework of the French national project SINAPS@, aims to develo...
This thesis, carried out within the framework of the French national project SINAPS@, aims to develo...
This thesis, carried out within the framework of the French national project SINAPS@, aims to develo...
Cette thèse, réalisée dans le cadre du projet national SINAPS@, a pour objectif de développer des él...
International audienceA novel generalized Timoshenko beam finite element with higher order shape fun...
This paper presents a beam finite element for the simulation of the monotonic and cyclic response of...
In the present work, a multiscale model for fibre reinforced concrete (FRC) beams failing in bending...
A nonlinear finite element analysis of fibre-reinforced concrete beams subjected to static loading w...
A nonlinear finite element analysis of steel fibre-reinforced concrete beams subjected to static loa...
The paper presents a new methodology to model material failure, in two-dimensional reinforced concre...
Experimental research has pointed out that fibre reinforcement gives valuable contribution for the s...
A three-dimensional fiber-based frame element accounting for multiaxial stress conditions in reinfor...
International audienceA novel multi-fiber beam finite element formulation based on the Timoshenko mo...
International audienceAn enhanced high order multifiber Timoshenko beam is introduced to simulate st...
International audienceAn enhanced high order multifiber Timoshenko beam is introduced to simulate st...
This thesis, carried out within the framework of the French national project SINAPS@, aims to develo...
This thesis, carried out within the framework of the French national project SINAPS@, aims to develo...
This thesis, carried out within the framework of the French national project SINAPS@, aims to develo...
Cette thèse, réalisée dans le cadre du projet national SINAPS@, a pour objectif de développer des él...
International audienceA novel generalized Timoshenko beam finite element with higher order shape fun...
This paper presents a beam finite element for the simulation of the monotonic and cyclic response of...
In the present work, a multiscale model for fibre reinforced concrete (FRC) beams failing in bending...
A nonlinear finite element analysis of fibre-reinforced concrete beams subjected to static loading w...
A nonlinear finite element analysis of steel fibre-reinforced concrete beams subjected to static loa...
The paper presents a new methodology to model material failure, in two-dimensional reinforced concre...
Experimental research has pointed out that fibre reinforcement gives valuable contribution for the s...
A three-dimensional fiber-based frame element accounting for multiaxial stress conditions in reinfor...