Composites made of reinforcing short fibers embedded into brittle matrices, like, e.g., fiber-reinforced concretes, exhibit enhanced strength and ductility properties. Their failure process induced by tensile loadings involves hardening and softening stages as a result of matrix multiple micro-cracking, due to stress bridging of fibers across matrix micro-cracks, and strain localization phenomena. In the present paper, a variational model is proposed for the description of the intriguing failure mechanisms observed in short fibre-reinforced composites subjected to tensile loadings. The key modeling idea is to schematize the composite as a mixture of two phases, a brittle phase, representative of the matrix, and a ductile phase, accounting f...
Quasi-brittle materials like concrete or rocks, typically present localized failure modes due to cra...
We investigate the evolution and propagation of cracks in 2-d elastic domains, which are subjected t...
A physically based failure hypothesis is developed for short fibre reinforced thermoplastics. The mo...
Composites made of reinforcing short fibers embedded into brittle matrices, like, e.g., fiber-reinfo...
A variational micro-mechanical model is proposed to reproduce the complex response of fiber-reinforc...
In this talk, a variational model is proposed for the description of ductile failure in composite ma...
A computational model for fibre-reinforced brittle materials in tension is developed. The model incl...
A MICROMECHANICAL model has been formulated for the post-cracking behavior of a brittle matrix compo...
A model has been formulated for the post-cracking behavior of a brittle matrix composite reinforced...
The safety assessment of short-fibre-reinforced (SFR) composites, commonly used in structural appli...
In the present paper, a computational model for brittle-matrix fibre-reinforced composite (FRC) mate...
The paper presents a 3D constitutive model for fibre reinforced cementitious composites based on mic...
The use of reinforcing fibres has shown to be an effective, simple and economic way to enhance the m...
Quasi-brittle materials like concrete or rocks, typically present localized failure modes due to cra...
We investigate the evolution and propagation of cracks in 2-d elastic domains, which are subjected t...
A physically based failure hypothesis is developed for short fibre reinforced thermoplastics. The mo...
Composites made of reinforcing short fibers embedded into brittle matrices, like, e.g., fiber-reinfo...
A variational micro-mechanical model is proposed to reproduce the complex response of fiber-reinforc...
In this talk, a variational model is proposed for the description of ductile failure in composite ma...
A computational model for fibre-reinforced brittle materials in tension is developed. The model incl...
A MICROMECHANICAL model has been formulated for the post-cracking behavior of a brittle matrix compo...
A model has been formulated for the post-cracking behavior of a brittle matrix composite reinforced...
The safety assessment of short-fibre-reinforced (SFR) composites, commonly used in structural appli...
In the present paper, a computational model for brittle-matrix fibre-reinforced composite (FRC) mate...
The paper presents a 3D constitutive model for fibre reinforced cementitious composites based on mic...
The use of reinforcing fibres has shown to be an effective, simple and economic way to enhance the m...
Quasi-brittle materials like concrete or rocks, typically present localized failure modes due to cra...
We investigate the evolution and propagation of cracks in 2-d elastic domains, which are subjected t...
A physically based failure hypothesis is developed for short fibre reinforced thermoplastics. The mo...