Stress propagation in nonlinear media is crucial in cell biology, where molecular motors exert anisotropic force dipoles on the fibrous cytoskeleton. While the force dipoles can be either contractile or expansile, a medium made of fibers which buckle under compression rectifies these stresses towards a biologically crucial contraction. A general understanding of this rectification phenomenon as a function of the medium's elasticity is however lacking. Here we use theoretical continuum elasticity to show that rectification is actually a very general effect in nonlinear materials subjected to anisotropic internal stresses. We analytically show that both bucklable and constitutively linear materials subjected to geometrical nonlinearities rect...
Journal articleWe present a constitutive model capturing some of the experimentally observed feature...
Transiently cross linked networks of semiflexible filaments make up the principal structural compone...
When elastic solids are sheared, a nonlinear effect named after Poynting gives rise to normal stress...
Nonlinear deformations can irreversibly alter the mechanical properties of materials. Most soft mate...
When loaded in simple shear deformation, polymeric materials may develop so-called normal stresses: ...
We show that the nonlinear mechanical response of networks formed from un-cross-linked fibrin or col...
AbstractIt is well known that substrate stretching reorganizes the actin cytoskeleton of an adherent...
We construct a homogeneous, nonlinear elastic constitutive law that models aspects of the mechanical...
Collagen is the main structural and load-bearing element of various connective tissues, where it for...
In many soft biological tissues mechanical strength and anisotropy are determined primarily by the p...
8 pages, 4 figures. Supporting information: 5 pages, 5 figuresInternational audienceLarge-scale forc...
International audienceCross-linked semiflexible polymer networks are omnipresent in living cells. Ty...
Incompressible nonlinearly hyperelastic materials are rarely simulated in finite element numerical e...
Problems of flexible mechanical metamaterials, and highly deformable porous solids in general, are r...
When subject to stress or external loads, most materials resist deformation. Any stable material, fo...
Journal articleWe present a constitutive model capturing some of the experimentally observed feature...
Transiently cross linked networks of semiflexible filaments make up the principal structural compone...
When elastic solids are sheared, a nonlinear effect named after Poynting gives rise to normal stress...
Nonlinear deformations can irreversibly alter the mechanical properties of materials. Most soft mate...
When loaded in simple shear deformation, polymeric materials may develop so-called normal stresses: ...
We show that the nonlinear mechanical response of networks formed from un-cross-linked fibrin or col...
AbstractIt is well known that substrate stretching reorganizes the actin cytoskeleton of an adherent...
We construct a homogeneous, nonlinear elastic constitutive law that models aspects of the mechanical...
Collagen is the main structural and load-bearing element of various connective tissues, where it for...
In many soft biological tissues mechanical strength and anisotropy are determined primarily by the p...
8 pages, 4 figures. Supporting information: 5 pages, 5 figuresInternational audienceLarge-scale forc...
International audienceCross-linked semiflexible polymer networks are omnipresent in living cells. Ty...
Incompressible nonlinearly hyperelastic materials are rarely simulated in finite element numerical e...
Problems of flexible mechanical metamaterials, and highly deformable porous solids in general, are r...
When subject to stress or external loads, most materials resist deformation. Any stable material, fo...
Journal articleWe present a constitutive model capturing some of the experimentally observed feature...
Transiently cross linked networks of semiflexible filaments make up the principal structural compone...
When elastic solids are sheared, a nonlinear effect named after Poynting gives rise to normal stress...