In this paper, a phenomenologically motivated magneto-mechanically coupled finite strain elastic framework for simulating the curing process of polymers in the presence of a magnetic load is proposed. This approach is in line with previous works by Hossain and co-workers on finite strain curing modelling framework for the purely mechanical polymer curing (Hossain et al., 2009b). The proposed thermodynamically consistent approach is independent of any particular free energy function that may be used for the fully-cured magneto-sensitive polymer modelling, i.e. any phenomenological or micromechanical-inspired free energy can be inserted into the main modelling framework. For the fabrication of magneto-sensitive polymers, micron-size ferromagn...
A temporal evolution of material parameters may appear in many fields; as a paradigm the curing proc...
Coopération ENSAM/University of Erlangenpolymers. In the case of magneto-sensitive polymers, micron-...
Coopération ENSAM/University of Erlangenpolymers. In the case of magneto-sensitive polymers, micron-...
In this paper, a phenomenologically motivated magneto-mechanically coupled finite strain elastic fra...
In this paper, a phenomenologically motivated magneto-mechanically coupled finite strain elastic fra...
In this paper, a phenomenologically motivated magneto-mechanically coupled finite strain elastic fra...
This paper deals with a phenomenologically motivated magneto-viscoelastic coupled finite strain fram...
This paper deals with a phenomenologically motivated magneto-viscoelastic coupled finite strain fram...
This paper deals with a phenomenologically motivated magneto-viscoelastic coupled finite strain fram...
We propose a magneto-mechanically coupled multi-scale model for simulating the curing process of pol...
Coopération ENSAM/University of ErlangenInternational audienceWe propose a magneto-mechanically coup...
This work proposes a coupled magneto-mechanical multi-scale model for simulating the curing process ...
A temporal evolution of material parameters may appear in many fields; as a paradigm the curing proc...
This work proposes a coupled magneto-mechanical multi-scale model for simulating the curing process ...
A temporal evolution of material parameters may appear in many fields; as a paradigm the curing proc...
A temporal evolution of material parameters may appear in many fields; as a paradigm the curing proc...
Coopération ENSAM/University of Erlangenpolymers. In the case of magneto-sensitive polymers, micron-...
Coopération ENSAM/University of Erlangenpolymers. In the case of magneto-sensitive polymers, micron-...
In this paper, a phenomenologically motivated magneto-mechanically coupled finite strain elastic fra...
In this paper, a phenomenologically motivated magneto-mechanically coupled finite strain elastic fra...
In this paper, a phenomenologically motivated magneto-mechanically coupled finite strain elastic fra...
This paper deals with a phenomenologically motivated magneto-viscoelastic coupled finite strain fram...
This paper deals with a phenomenologically motivated magneto-viscoelastic coupled finite strain fram...
This paper deals with a phenomenologically motivated magneto-viscoelastic coupled finite strain fram...
We propose a magneto-mechanically coupled multi-scale model for simulating the curing process of pol...
Coopération ENSAM/University of ErlangenInternational audienceWe propose a magneto-mechanically coup...
This work proposes a coupled magneto-mechanical multi-scale model for simulating the curing process ...
A temporal evolution of material parameters may appear in many fields; as a paradigm the curing proc...
This work proposes a coupled magneto-mechanical multi-scale model for simulating the curing process ...
A temporal evolution of material parameters may appear in many fields; as a paradigm the curing proc...
A temporal evolution of material parameters may appear in many fields; as a paradigm the curing proc...
Coopération ENSAM/University of Erlangenpolymers. In the case of magneto-sensitive polymers, micron-...
Coopération ENSAM/University of Erlangenpolymers. In the case of magneto-sensitive polymers, micron-...