An effective-medium model is introduced for the elasticity of two-dimensional random fiber networks. These networks are commonly used as basic models of heterogeneous fibrous structures such as paper. Using the exact Poissonian statistics to describe the microscopic geometry of the network, the tensile modulus can be expressed by a single-parameter function. This parameter depends on the network density and fiber dimensions, which relate the macroscopic modulus to the relative importance of axial and bending deformations of the fibers. The model agrees well with simulation results and experimental findings. We also discuss the possible generalizations of the model.Peer reviewe
We study the elasticity of random stiff fiber networks. The elastic response of the fibers is charac...
AbstractThe numerical analysis performed here, using a finite element network model, provides a numb...
A model is designed for predicting the elastic constants of a random planar network of interconnecte...
An effective-medium model is introduced for the elasticity of two-dimensional random fiber networks....
A micromechanics model is proposed for the elasticity of planar fiber networks (FNs). The FN is crea...
The transition in random fiber networks from two-dimensional to asymptotically three-dimensional pla...
The effective linear-elastic moduli of disordered network solids are analyzed by voxel-based finite ...
AbstractBonded random fiber networks are heterogeneous on multiple scales. This leads to a pronounce...
We study the failure of planar random fiber networks with computer simulations. The networks are gro...
We study the elasticity of random fiber networks. Starting from a microscopic picture of the nonaffi...
112 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2009.The simulation then extends t...
Filamentous protein networks are broadly encountered in biological systems such as cytoskeleton and ...
From everyday items such as paper, felt and nappies, to sophisticated biological structures such as ...
Abstract. We consider a particular in-plane elastic orthotropy observed experimentally for various t...
We study the elasticity of random stiff fiber networks. The elastic response of the fibers is charac...
AbstractThe numerical analysis performed here, using a finite element network model, provides a numb...
A model is designed for predicting the elastic constants of a random planar network of interconnecte...
An effective-medium model is introduced for the elasticity of two-dimensional random fiber networks....
A micromechanics model is proposed for the elasticity of planar fiber networks (FNs). The FN is crea...
The transition in random fiber networks from two-dimensional to asymptotically three-dimensional pla...
The effective linear-elastic moduli of disordered network solids are analyzed by voxel-based finite ...
AbstractBonded random fiber networks are heterogeneous on multiple scales. This leads to a pronounce...
We study the failure of planar random fiber networks with computer simulations. The networks are gro...
We study the elasticity of random fiber networks. Starting from a microscopic picture of the nonaffi...
112 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2009.The simulation then extends t...
Filamentous protein networks are broadly encountered in biological systems such as cytoskeleton and ...
From everyday items such as paper, felt and nappies, to sophisticated biological structures such as ...
Abstract. We consider a particular in-plane elastic orthotropy observed experimentally for various t...
We study the elasticity of random stiff fiber networks. The elastic response of the fibers is charac...
AbstractThe numerical analysis performed here, using a finite element network model, provides a numb...
A model is designed for predicting the elastic constants of a random planar network of interconnecte...