The aim of this paper is to present experimental data and the constitutive model for the inelastic behavior of polyoxymethylene in wide strain rate and temperature ranges. To capture the non-linearity of the stress responses for both loading and unloading regimes, the composite model of inelastic deformation is utilized and further developed. The equivalent inelastic strain rate is described by the Prandtl–Eyring law, while the temperature dependence is characterized by the modified Arrhenius-type law. Generalized equivalent stress and the flow rule are formulated to capture pressure sensitivity, transverse strain and volumetric strain responses. The results obtained by the constitutive law are compared with experimental data for stress vs....
The present paper deals with constitutive modeling of the compressive stress-strain behavior of sele...
Thin films of linear low-density polyethylene show a significant time-dependent behavior, strongly r...
The mechanical response of Polyethylene Terephthalate (PET) in elongation is strongly dependent on t...
A constitutive model for isotropic, semi-crystalline polymers is proposed. The model is Eulerian in ...
In this paper we describe the intrinsic deformation behaviour of polyoxymethylene in uniaxial tensio...
Inelastic deformation behaviour of polypropylene in tensile large strain region and after axial pr...
In this work, tensile tests on high density polyethylene have been carried out under various constan...
Stress-strain isotherms at a number of temperatures in the range 45-85[deg]C have been determined fo...
The mechanical properties of polyethylene (PE) materials are greatly influenced by their molecular s...
The mechanical behaviour of polymers is strongly influenced by temperature and strain rate condition...
The time-dependent deformation behaviour of a commercial grade of high-performance polyethylene fibr...
AbstractUniaxial compression stress–strain tests were carried out on three commercial amorphous poly...
Background Understanding the mechanical response of elastomers to applied deformation at different s...
The classical viscoelastic constitutive equations do not simulate correctly the mechanical behavior ...
Non-linearity, loading rate, as well as temperature and pressure dependency present major challenges...
The present paper deals with constitutive modeling of the compressive stress-strain behavior of sele...
Thin films of linear low-density polyethylene show a significant time-dependent behavior, strongly r...
The mechanical response of Polyethylene Terephthalate (PET) in elongation is strongly dependent on t...
A constitutive model for isotropic, semi-crystalline polymers is proposed. The model is Eulerian in ...
In this paper we describe the intrinsic deformation behaviour of polyoxymethylene in uniaxial tensio...
Inelastic deformation behaviour of polypropylene in tensile large strain region and after axial pr...
In this work, tensile tests on high density polyethylene have been carried out under various constan...
Stress-strain isotherms at a number of temperatures in the range 45-85[deg]C have been determined fo...
The mechanical properties of polyethylene (PE) materials are greatly influenced by their molecular s...
The mechanical behaviour of polymers is strongly influenced by temperature and strain rate condition...
The time-dependent deformation behaviour of a commercial grade of high-performance polyethylene fibr...
AbstractUniaxial compression stress–strain tests were carried out on three commercial amorphous poly...
Background Understanding the mechanical response of elastomers to applied deformation at different s...
The classical viscoelastic constitutive equations do not simulate correctly the mechanical behavior ...
Non-linearity, loading rate, as well as temperature and pressure dependency present major challenges...
The present paper deals with constitutive modeling of the compressive stress-strain behavior of sele...
Thin films of linear low-density polyethylene show a significant time-dependent behavior, strongly r...
The mechanical response of Polyethylene Terephthalate (PET) in elongation is strongly dependent on t...