The stacked lamellar morphology as commonly found for extruded semicrystalline materialsgives rise to a strong influence of the direction of flow with respect to the loading direction onthe stability and localization phenomena in tensile experiments. A multiscale numerical model isused to simulate the effect of a stacked lamellar microstructure on the macroscopic behavior. Themodel establishes a link between the microscopic, the mesoscopic, and the macroscopic levels.The constitutive properties of the material are identified for the crystallographic and amorphousdomains. The averaged fields of an aggregate of individual phases, having preferential orientations,form the constitutive behavior of extruded material. The microscopic morphology o...
The process of plastic deformation in semicrystalline polymers is complicated due to the operation o...
Some manufacturing processes of polymeric materials, such as injection molding or film blowing, caus...
Some manufacturing processes of polymeric materials, such as injection moulding or film blowing, cau...
The stacked lamellar morphology as commonly found for extruded semicrystalline materialsgives rise t...
ABSTRACT: The stacked lamellar morphology commonly found in extruded semicrys-talline materials has ...
A micromechanically-based constitutive model for high density polyethylene (HDPE) in small deformati...
For semicrystalline materials, a stacked lamellar morphology gives rise to a stronglyanisotropic mec...
Semicrystalline polymers often show a spherulitic morphology, consisting of a radial assembly of twi...
The mechanical response of extruded and injection molded semicrystalline materials, in which an orie...
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 common practice in toughening of semicrystalline polymers is to blend them with second-phase rubbe...
A micromechanically-based constitutive model for the elasto-viscoplastic deformationand texture evol...
The process of plastic deformation in semicrystalline polymers is complicated due to the operation o...
Some manufacturing processes of polymeric materials, such as injection molding or film blowing, caus...
Some manufacturing processes of polymeric materials, such as injection moulding or film blowing, cau...
The stacked lamellar morphology as commonly found for extruded semicrystalline materialsgives rise t...
ABSTRACT: The stacked lamellar morphology commonly found in extruded semicrys-talline materials has ...
A micromechanically-based constitutive model for high density polyethylene (HDPE) in small deformati...
For semicrystalline materials, a stacked lamellar morphology gives rise to a stronglyanisotropic mec...
Semicrystalline polymers often show a spherulitic morphology, consisting of a radial assembly of twi...
The mechanical response of extruded and injection molded semicrystalline materials, in which an orie...
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 common practice in toughening of semicrystalline polymers is to blend them with second-phase rubbe...
A micromechanically-based constitutive model for the elasto-viscoplastic deformationand texture evol...
The process of plastic deformation in semicrystalline polymers is complicated due to the operation o...
Some manufacturing processes of polymeric materials, such as injection molding or film blowing, caus...
Some manufacturing processes of polymeric materials, such as injection moulding or film blowing, cau...