We introduce a continuum model for a fibre reinforced material in which the reference orientation of the fibre may evolve with time, under the influence of external stimuli. The model is formulated in the framework of large strain hyperelasticity and the kinematics of the continuum is described by both a position vector and by a remodelling tensor which, in the present context, is an orthogonal tensor representing the fibre reorientation process. By imposing suitable thermodynamical restrictions on the constitutive equation, we obtain an evolution equation of the remodelling tensor governed by the Eshelby torque, whose stationary solutions are studied in absence of any external source terms. It is shown that the fibres reorient themselves i...
Extracellular matrix remodelling plays an essential role in tissue engineering of load-bearingstruct...
We discuss a constitutive model for stochastically distributed fiber reinforced tissues, where the a...
This paper introduces a model for the mechanical response of anisotropic soft materials undergoing l...
Transverse isotropy is realized by one characteristic direction—for instance, the fibre direction in...
Fiber alignment in biological tissues is created and maintained by the cells, which respond to mecha...
We present a continuum model to describe the reorientation of an anisotropic material structure, cha...
Transverse isotropy is realized by one characteristic direction—for instance, the fibre direction in...
In many soft biological tissues mechanical strength and anisotropy are determined primarily by the p...
Fibre-reinforced elastomers are a class of elastomeric materials with peculiar me- chanical properti...
The large strain behaviour of a short fibre-reinforced composite is studied through numerical simula...
We propose a continuum model of fibrous materials that may undergo an internal reorganization, which...
We highlight some mechanical aspects of the coupling among deformation, fluid flow, structural evolu...
International audienceA multiscale micromechanical model for soft tissue is presented. This model ac...
This work defines an incompressible, hyperelastic theory of anisotropic soft materials at finite str...
In the field of configurational mechanics we study energetic changes associated to variations of mat...
Extracellular matrix remodelling plays an essential role in tissue engineering of load-bearingstruct...
We discuss a constitutive model for stochastically distributed fiber reinforced tissues, where the a...
This paper introduces a model for the mechanical response of anisotropic soft materials undergoing l...
Transverse isotropy is realized by one characteristic direction—for instance, the fibre direction in...
Fiber alignment in biological tissues is created and maintained by the cells, which respond to mecha...
We present a continuum model to describe the reorientation of an anisotropic material structure, cha...
Transverse isotropy is realized by one characteristic direction—for instance, the fibre direction in...
In many soft biological tissues mechanical strength and anisotropy are determined primarily by the p...
Fibre-reinforced elastomers are a class of elastomeric materials with peculiar me- chanical properti...
The large strain behaviour of a short fibre-reinforced composite is studied through numerical simula...
We propose a continuum model of fibrous materials that may undergo an internal reorganization, which...
We highlight some mechanical aspects of the coupling among deformation, fluid flow, structural evolu...
International audienceA multiscale micromechanical model for soft tissue is presented. This model ac...
This work defines an incompressible, hyperelastic theory of anisotropic soft materials at finite str...
In the field of configurational mechanics we study energetic changes associated to variations of mat...
Extracellular matrix remodelling plays an essential role in tissue engineering of load-bearingstruct...
We discuss a constitutive model for stochastically distributed fiber reinforced tissues, where the a...
This paper introduces a model for the mechanical response of anisotropic soft materials undergoing l...