International audienceThe present paper is a first step towards the definition of a new multiaxial fracture criterion for rubber-like materials. Assuming that elastomers are subjected to a uniform distribution of intrinsic flaws, the framework of Eshelbian mechanics is considered. More precisely, the properties of the energy-momentum tensor are thoroughly studied to derive the criterion. A basic numerical example is presented and the qualitative discrepancy between the results obtained with this criterion and those relative to more classical approaches is highlighted
finite element analysis. Abstract: We applied the fracture mechanics approach and the nonlinear fini...
This work deals with fracture of rubbers under mixed mode. A filled Styrene Butadiene Rubber (SBR) w...
A multiaxial fatigue failure criterion is proposed based on the strain energy density damage law. Th...
International audienceThe present paper is a first step towards the definition of a new multiaxial f...
This paper investigates commonly used approaches for fatigue crack nucleation analysis in rubber, in...
International audienceFrom an engineering point of view, prediction of fatigue crack nucleation in a...
This paper presents and discusses observations of crack nucleation and small crack growth in a fille...
AbstractThe onset of crack propagation in rubber is studied computationally by using the softening h...
International audienceIn this work, we attempt to derive a fracture criterion for filled and unfille...
International audienceIn this work, fracture of elastomers is analyzed using global and local approa...
International audienceThe ever growing use of elastomers and polymers in structures leads to the nee...
Although both the crack nucleation and growth stages of the fatigue failure process in rubber are ma...
It is known that the application of fracture mechanics methods to rubbers generates some pecu-liarit...
This work explores multiaxial stress effects on fatigue crack nucleation and growth in filled natura...
A new criterion is presented for fracture assessment of rubber-like materials weakened by a mode I c...
finite element analysis. Abstract: We applied the fracture mechanics approach and the nonlinear fini...
This work deals with fracture of rubbers under mixed mode. A filled Styrene Butadiene Rubber (SBR) w...
A multiaxial fatigue failure criterion is proposed based on the strain energy density damage law. Th...
International audienceThe present paper is a first step towards the definition of a new multiaxial f...
This paper investigates commonly used approaches for fatigue crack nucleation analysis in rubber, in...
International audienceFrom an engineering point of view, prediction of fatigue crack nucleation in a...
This paper presents and discusses observations of crack nucleation and small crack growth in a fille...
AbstractThe onset of crack propagation in rubber is studied computationally by using the softening h...
International audienceIn this work, we attempt to derive a fracture criterion for filled and unfille...
International audienceIn this work, fracture of elastomers is analyzed using global and local approa...
International audienceThe ever growing use of elastomers and polymers in structures leads to the nee...
Although both the crack nucleation and growth stages of the fatigue failure process in rubber are ma...
It is known that the application of fracture mechanics methods to rubbers generates some pecu-liarit...
This work explores multiaxial stress effects on fatigue crack nucleation and growth in filled natura...
A new criterion is presented for fracture assessment of rubber-like materials weakened by a mode I c...
finite element analysis. Abstract: We applied the fracture mechanics approach and the nonlinear fini...
This work deals with fracture of rubbers under mixed mode. A filled Styrene Butadiene Rubber (SBR) w...
A multiaxial fatigue failure criterion is proposed based on the strain energy density damage law. Th...