AbstractObservations are reported on polypropylene/polyethylene blends with various concentrations of components in uniaxial tensile tests with constant strain rates, relaxation tests, and creep tests at room temperature. A model is developed for the viscoelastic and viscoplastic responses of polymer blends at arbitrary three-dimensional deformation with small strains. Material constants in the constitutive equations are determined by fitting the experimental data. It is found that all adjustable parameters evolve with blend composition following an analog of the rule of mixture. Lifetime of blends under condition of creep rupture is evaluated by numerical simulation
The non-linear visco-elastic behavior of various thermoplastic materials has long ago been establish...
Viscoelastic behavior of most polymeric materials is nonlinear over a major portion of the interval ...
The dynamic viscoelastic properties of polypropylene (PP)–maleated PP blends in the molten state hav...
AbstractObservations are reported on polypropylene/polyethylene blends with various concentrations o...
Purpose – The purpose of this paper is to perform experimental investigation and constitutive modeli...
Three series of tensile tests with constant cross-head speeds (ranging from 5 to 200 mm/min), tensil...
The transient uniaxial elongational viscosity for binary blends composed of polypropylene (PP) and l...
AbstractObservations are reported on high-density polyethylene in uniaxial tensile tests with consta...
To describe the constitutive behaviour of a certain class of polymer blends an elastoperfectly-visco...
Mechanical tests were performed in the pre-necking domain of polypropylene (PP) to characterize its ...
This paper focuses on experimental investigation and modelling of the unusual creep and relaxation b...
Blends of polypropylene/ethylene vinyl acetate (PP/EVA) have been investigated for linear and transi...
Two series of uniaxial tensile tests are performed on isotactic polypropylene with the strain rates ...
Creep, the deformation over time of a material under stress, is one characteristic of composites tha...
A new method to characterize the long-time linear relaxation mechanisms of immiscible blends based o...
The non-linear visco-elastic behavior of various thermoplastic materials has long ago been establish...
Viscoelastic behavior of most polymeric materials is nonlinear over a major portion of the interval ...
The dynamic viscoelastic properties of polypropylene (PP)–maleated PP blends in the molten state hav...
AbstractObservations are reported on polypropylene/polyethylene blends with various concentrations o...
Purpose – The purpose of this paper is to perform experimental investigation and constitutive modeli...
Three series of tensile tests with constant cross-head speeds (ranging from 5 to 200 mm/min), tensil...
The transient uniaxial elongational viscosity for binary blends composed of polypropylene (PP) and l...
AbstractObservations are reported on high-density polyethylene in uniaxial tensile tests with consta...
To describe the constitutive behaviour of a certain class of polymer blends an elastoperfectly-visco...
Mechanical tests were performed in the pre-necking domain of polypropylene (PP) to characterize its ...
This paper focuses on experimental investigation and modelling of the unusual creep and relaxation b...
Blends of polypropylene/ethylene vinyl acetate (PP/EVA) have been investigated for linear and transi...
Two series of uniaxial tensile tests are performed on isotactic polypropylene with the strain rates ...
Creep, the deformation over time of a material under stress, is one characteristic of composites tha...
A new method to characterize the long-time linear relaxation mechanisms of immiscible blends based o...
The non-linear visco-elastic behavior of various thermoplastic materials has long ago been establish...
Viscoelastic behavior of most polymeric materials is nonlinear over a major portion of the interval ...
The dynamic viscoelastic properties of polypropylene (PP)–maleated PP blends in the molten state hav...