This paper focuses on the modeling of a fiber-reinforced composite material, by means of a micropolar continuum. The macroscopic constitutive relation is obtained by a multiscale procedure, bridging the continuum with a lattice-type micromodel. Numerical results show the influence of the morphological and constitutive micro-features on the macroscopic response
The description of the mechanical behavior of composite materials is an open challenge in engineerin...
A multifield continuous model is adopted to investigate the mechanical behaviour of heterogeneous ma...
AbstractThe numerical analysis of engineering structures is usually based upon the assumptions of a ...
We present a multiscale model for composite materials based on the theory of multifield continua. Su...
The mechanical behavior of materials endowed with specific microstructure can be properly described ...
We present a two–steps multiscale procedure suitable to describe the constitutive behavior of hierar...
We present a two–steps multiscale procedure suitable to describe the constitutive behavior of hierar...
Most of the existing materials around us can be considered composite materials, since they are compo...
We present a two–steps multiscale procedure suitable to describe the constitutive behavior of hierar...
Most of the existing materials around us can be considered composite materials, since they are compo...
An efficient multiscale approach is established in order to compute the macroscopic response of nonl...
An efficient multiscale approach is established in order to compute the macroscopic response of nonl...
Multiscale procedures are often adopted for the continuum modeling of materials composed of a specif...
Recent developments in the area of multiscale modeling of fiber-reinforced polymers are presented. T...
The description of the mechanical behavior of composite materials is an open challenge in engineerin...
The description of the mechanical behavior of composite materials is an open challenge in engineerin...
A multifield continuous model is adopted to investigate the mechanical behaviour of heterogeneous ma...
AbstractThe numerical analysis of engineering structures is usually based upon the assumptions of a ...
We present a multiscale model for composite materials based on the theory of multifield continua. Su...
The mechanical behavior of materials endowed with specific microstructure can be properly described ...
We present a two–steps multiscale procedure suitable to describe the constitutive behavior of hierar...
We present a two–steps multiscale procedure suitable to describe the constitutive behavior of hierar...
Most of the existing materials around us can be considered composite materials, since they are compo...
We present a two–steps multiscale procedure suitable to describe the constitutive behavior of hierar...
Most of the existing materials around us can be considered composite materials, since they are compo...
An efficient multiscale approach is established in order to compute the macroscopic response of nonl...
An efficient multiscale approach is established in order to compute the macroscopic response of nonl...
Multiscale procedures are often adopted for the continuum modeling of materials composed of a specif...
Recent developments in the area of multiscale modeling of fiber-reinforced polymers are presented. T...
The description of the mechanical behavior of composite materials is an open challenge in engineerin...
The description of the mechanical behavior of composite materials is an open challenge in engineerin...
A multifield continuous model is adopted to investigate the mechanical behaviour of heterogeneous ma...
AbstractThe numerical analysis of engineering structures is usually based upon the assumptions of a ...