The Hierarchical Multi-mode Molecular Stress Function (HMMSF) model predicts the elongational and multiaxial extensional viscosities of polydisperse linear polymer melts based exclusively on their linear viscoelastic characterization and a single nonlinear material parameter, the so-called dilution modulus GD. For long-chain branched (LCB) polymer melts such as low-density polyethylene (LDPE), the HMMSF model describes quantitatively the elongational stress growth coefficient up to the maximum of the elongational viscosity but fails to predict the existence of the maximum and the following steady-state viscosity. By taking into account branch point withdrawal in elongational flow of LCB melts, we extend the HMMSF model and show that the max...
Various rheological properties have been studied for two kinds of low-density polyethylenes (LDPEs):...
We present the results of non-equilibrium molecular dynamics simulations of planar shear flow and pl...
The prediction of linear viscoelasticity (LVE) of a polymer melts from the knowledge of their struct...
The transient elongational data set obtained by filament-stretching rheometry of four commercial hig...
We present new results for the low strain rate behavior of the steady-state planar shear and elongat...
We report the first steps of a collaborative project between the University of Queensland, Polyflow,...
Quantitative prediction of the rheological properties of polymers will become an important tool that...
In this work, a study of the influence of molecular struc- ture on the viscoelastic behavior of mel...
We study the flow response in large amplitude oscillatory shear of the molecular stress function (MS...
[[abstract]]Metallocene-catalyzed, low-density and linear low-density polyethylenes with similar mel...
In a Rheotens experiment, the tensile force needed for elongation of an extruded filament is measure...
We present a differential constitutive model of stress relaxation in polydisperse linear polymer mel...
A tube and reptation model is presented which is capable of generating quantitative predictions of t...
Submitted to J. Rheol.The startup and steady uniaxial elongational viscosity have been measured for ...
We analyze the onset of ‘necking ’ and subsequent fllament failure during the transient uniaxial elo...
Various rheological properties have been studied for two kinds of low-density polyethylenes (LDPEs):...
We present the results of non-equilibrium molecular dynamics simulations of planar shear flow and pl...
The prediction of linear viscoelasticity (LVE) of a polymer melts from the knowledge of their struct...
The transient elongational data set obtained by filament-stretching rheometry of four commercial hig...
We present new results for the low strain rate behavior of the steady-state planar shear and elongat...
We report the first steps of a collaborative project between the University of Queensland, Polyflow,...
Quantitative prediction of the rheological properties of polymers will become an important tool that...
In this work, a study of the influence of molecular struc- ture on the viscoelastic behavior of mel...
We study the flow response in large amplitude oscillatory shear of the molecular stress function (MS...
[[abstract]]Metallocene-catalyzed, low-density and linear low-density polyethylenes with similar mel...
In a Rheotens experiment, the tensile force needed for elongation of an extruded filament is measure...
We present a differential constitutive model of stress relaxation in polydisperse linear polymer mel...
A tube and reptation model is presented which is capable of generating quantitative predictions of t...
Submitted to J. Rheol.The startup and steady uniaxial elongational viscosity have been measured for ...
We analyze the onset of ‘necking ’ and subsequent fllament failure during the transient uniaxial elo...
Various rheological properties have been studied for two kinds of low-density polyethylenes (LDPEs):...
We present the results of non-equilibrium molecular dynamics simulations of planar shear flow and pl...
The prediction of linear viscoelasticity (LVE) of a polymer melts from the knowledge of their struct...