In many applications, such as textiles, fibreglass, paper and several kinds of biological fibrous tissues, the main load-bearing constituents at the micro-scale are arranged as a fibre network. In these materials, rupture is usually driven by micro-mechanical failure mechanisms, and strain localisation due to progressive damage evolution in the fibres is the main cause of macro-scale instability. We propose a strain-driven computational homogenisation formulationbased on Representative Volume Element (RVE), within a framework in which micro-scale fibre damage can lead to macro-scale localisation phenomena. The mechanical stiffness considered here for the fibrous structure system is due to: i) an intra-fibre mechanism in which each fibre is ...
Introduction: The past decade was marked by the emergence of a large number of so-called regularized...
To increase the use of polymeric structural composites, a major issue is to properly account for int...
Understanding a mechanical behaviour of polymer-based nonwoven materials that include largestrain d...
In many applications, such as textiles, fibreglass, paper and several kinds of biological fibrous ti...
Computational homogenization allows to let the macroscopic constitutive behavior of materials emerge...
AbstractThe numerical analysis performed here, using a finite element network model, provides a numb...
AbstractFracture in a planar randomly ordered fiber network subjected to approximately homogenous ma...
This paper presents a multi-scale modelling approach for bridging the microscale damage and macrosca...
In this work, multi-scale methods with strain softening are developed in the contexts of damage mode...
This paper presents a new micromechanical based approach for the modeling of the highly anisotropic ...
We present a novel two-scale finite element model for strain localization in solids, covering the co...
Fibrous materials such as paper, nonwovens, textiles, nanocellulose based-biomaterials, polymer netw...
This paper presents a framework that enables microstructural modelling of complex microstructures in...
Fibrous networks are encountered in various natural and synthetic materials. Typically, they have ra...
In this work, a gradient-enhanced mean-field homogenization (MFH) procedure is proposed for fiber re...
Introduction: The past decade was marked by the emergence of a large number of so-called regularized...
To increase the use of polymeric structural composites, a major issue is to properly account for int...
Understanding a mechanical behaviour of polymer-based nonwoven materials that include largestrain d...
In many applications, such as textiles, fibreglass, paper and several kinds of biological fibrous ti...
Computational homogenization allows to let the macroscopic constitutive behavior of materials emerge...
AbstractThe numerical analysis performed here, using a finite element network model, provides a numb...
AbstractFracture in a planar randomly ordered fiber network subjected to approximately homogenous ma...
This paper presents a multi-scale modelling approach for bridging the microscale damage and macrosca...
In this work, multi-scale methods with strain softening are developed in the contexts of damage mode...
This paper presents a new micromechanical based approach for the modeling of the highly anisotropic ...
We present a novel two-scale finite element model for strain localization in solids, covering the co...
Fibrous materials such as paper, nonwovens, textiles, nanocellulose based-biomaterials, polymer netw...
This paper presents a framework that enables microstructural modelling of complex microstructures in...
Fibrous networks are encountered in various natural and synthetic materials. Typically, they have ra...
In this work, a gradient-enhanced mean-field homogenization (MFH) procedure is proposed for fiber re...
Introduction: The past decade was marked by the emergence of a large number of so-called regularized...
To increase the use of polymeric structural composites, a major issue is to properly account for int...
Understanding a mechanical behaviour of polymer-based nonwoven materials that include largestrain d...