We study the elasticity of random stiff fiber networks. The elastic response of the fibers is characterized by a central force stretching stiffness as well as a bending stiffness that acts transverse to the fiber contour. Previous studies have shown that this model displays an anomalous elastic regime where the stretching mode is fully frozen out and the elastic energy is completely dominated by the bending mode. We demonstrate by simulations and scaling arguments that, in contrast to the bending dominated elastic energy, the equally important elastic forces are to a large extent stretching dominated. By characterizing these forces on microscopic, mesoscopic and macroscopic scales we find two mechanisms of how forces are transmitted in the ...
Networks of elastic beams can deform either by stretching or bending of their members. The primary m...
AbstractFracture in a planar randomly ordered fiber network subjected to approximately homogenous ma...
In this thesis, we study the mechanical properties of biopolymer networks. We discuss which of these...
We study the elasticity of random stiff fiber networks. The elastic response of the fibers is charac...
Above a small length scale, the distribution of local elastic energies in a material under an exter...
Networks of elastic fibers are ubiquitous in biological systems and often provide mechanical stabili...
We study the elasticity of random fiber networks. Starting from a microscopic picture of the nonaffi...
Cells residing in living tissues apply forces to their immediate surroundings to promote the restruc...
8 pages, 4 figures. Supporting information: 5 pages, 5 figuresInternational audienceLarge-scale forc...
An effective-medium model is introduced for the elasticity of two-dimensional random fiber networks....
AbstractBonded random fiber networks are heterogeneous on multiple scales. This leads to a pronounce...
We study the role of connectivity on the linear and nonlinear elastic behavior of amorphous systems ...
Cells actively probe and respond to the stiffness of their surroundings. Since mechanosensory cells ...
Disordered fibre networks are the basis of many man-made and natural materials, including structural...
Filamentous protein networks are broadly encountered in biological systems such as cytoskeleton and ...
Networks of elastic beams can deform either by stretching or bending of their members. The primary m...
AbstractFracture in a planar randomly ordered fiber network subjected to approximately homogenous ma...
In this thesis, we study the mechanical properties of biopolymer networks. We discuss which of these...
We study the elasticity of random stiff fiber networks. The elastic response of the fibers is charac...
Above a small length scale, the distribution of local elastic energies in a material under an exter...
Networks of elastic fibers are ubiquitous in biological systems and often provide mechanical stabili...
We study the elasticity of random fiber networks. Starting from a microscopic picture of the nonaffi...
Cells residing in living tissues apply forces to their immediate surroundings to promote the restruc...
8 pages, 4 figures. Supporting information: 5 pages, 5 figuresInternational audienceLarge-scale forc...
An effective-medium model is introduced for the elasticity of two-dimensional random fiber networks....
AbstractBonded random fiber networks are heterogeneous on multiple scales. This leads to a pronounce...
We study the role of connectivity on the linear and nonlinear elastic behavior of amorphous systems ...
Cells actively probe and respond to the stiffness of their surroundings. Since mechanosensory cells ...
Disordered fibre networks are the basis of many man-made and natural materials, including structural...
Filamentous protein networks are broadly encountered in biological systems such as cytoskeleton and ...
Networks of elastic beams can deform either by stretching or bending of their members. The primary m...
AbstractFracture in a planar randomly ordered fiber network subjected to approximately homogenous ma...
In this thesis, we study the mechanical properties of biopolymer networks. We discuss which of these...