A multi-scale constitutive model for the small deformations of semi-crystalline polymers such as high density Polyethylene is presented. Each macroscopic material point is supposed to be the center of a representative volume element which is an aggregate of randomly oriented composite inclusions. Each inclusion consists of a stack of parallel crystalline lamellae with their adjacent amorphous layers. Micro-mechanically based constitutive equations are developed for each phase. A viscoelastic model is used for the crystalline lamellae. A new nonlinear viscoelastic model for the amorphous phase behavior is proposed. The model takes into account the fact that the presence of crystallites confines the amorphous phase in extremely thin layers wh...
The mechanical behavior of semicrystalline polymers is strongly dependent on their crystallinity lev...
The mechanical behavior of semicrystalline polymers is strongly dependent on their crystallinity lev...
The mechanical behavior of semicrystalline polymers is strongly dependent on their crystallinity lev...
A micromechanically-based constitutive model for high density polyethylene (HDPE) in small deformati...
Abstract A micromechanically based constitutive model for the elasto-viscoplastic deformation and te...
A micromechanically-based constitutive model for the elasto-viscoplastic deformationand texture evol...
A micromechanically-based constitutive model for the elasto-viscoplastic deformationand texture evol...
A micromechanically-based constitutive model for the elasto-viscoplastic deformationand texture evol...
A micromechanically-based constitutive model for the elasto-viscoplastic deformationand texture evol...
A micromechanically-based constitutive model for the elasto-viscoplastic deformationand texture evol...
International audiencePolyethylene-based polymers as biomedical materials can contribute to a wide r...
International audienceThe elastic and large plastic deformations of semicrystalline polymers involve...
The mechanical behavior of semicrystalline polymers is strongly dependent on their crystallinity lev...
The mechanical behavior of semicrystalline polymers is strongly dependent on their crystallinity lev...
The mechanical behavior of semicrystalline polymers is strongly dependent on their crystallinity lev...
The mechanical behavior of semicrystalline polymers is strongly dependent on their crystallinity lev...
The mechanical behavior of semicrystalline polymers is strongly dependent on their crystallinity lev...
The mechanical behavior of semicrystalline polymers is strongly dependent on their crystallinity lev...
A micromechanically-based constitutive model for high density polyethylene (HDPE) in small deformati...
Abstract A micromechanically based constitutive model for the elasto-viscoplastic deformation and te...
A micromechanically-based constitutive model for the elasto-viscoplastic deformationand texture evol...
A micromechanically-based constitutive model for the elasto-viscoplastic deformationand texture evol...
A micromechanically-based constitutive model for the elasto-viscoplastic deformationand texture evol...
A micromechanically-based constitutive model for the elasto-viscoplastic deformationand texture evol...
A micromechanically-based constitutive model for the elasto-viscoplastic deformationand texture evol...
International audiencePolyethylene-based polymers as biomedical materials can contribute to a wide r...
International audienceThe elastic and large plastic deformations of semicrystalline polymers involve...
The mechanical behavior of semicrystalline polymers is strongly dependent on their crystallinity lev...
The mechanical behavior of semicrystalline polymers is strongly dependent on their crystallinity lev...
The mechanical behavior of semicrystalline polymers is strongly dependent on their crystallinity lev...
The mechanical behavior of semicrystalline polymers is strongly dependent on their crystallinity lev...
The mechanical behavior of semicrystalline polymers is strongly dependent on their crystallinity lev...
The mechanical behavior of semicrystalline polymers is strongly dependent on their crystallinity lev...