We extend van Ruymbeke et al.'s time marching algorithm (TMA) ( Macromolecules 2006, 39, 6248) in order to predict the linear viscoelastic properties of comb polymer melts. While former tube models have shown limitations for predicting the relaxation of comb polymer with short side branches, we observe here a good agreement between predictions and the experimental data for both combs with long and short side branches. In order to determine the origin of this improvement, we study the influence of the different elements present in the TMA model. In particular, we show the importance of taking into account the monomeric friction coming from the backbone itself in the total drag of the molecule, considering the modification of early time fluct...
The aim of the present paper is to analyse the differences between tube-based models which are widel...
The aim of the present paper is to analyse the differences between tube-based models which are widel...
Recently, Liu et al. (Macromolecules 2006, 39, 3093) showed a systematic discrepancy of tube model p...
We present a modified version of the time-marching algorithm (TMA) [van Ruymbeke et al., 2005, 2010]...
We present a modified version of the time-marching algorithm (TMA) [van Ruymbeke et al., 2005, 2010]...
We present a modified version of the time-marching algorithm (TMA) [van Ruymbeke et al., 2005, 2010]...
This study addresses the linear viscoelasticity of blends involving monodisperse comb and linear pol...
Quantitative prediction of the rheological properties of polymers will become an important tool that...
Quantitative prediction of the rheological properties of polymers will become an important tool that...
A tube and reptation model is presented which is capable of generating quantitative predictions of t...
A tube and reptation model is presented which is capable of generating quantitative predictions of t...
Standard analytical techniques like chromatography and spectrometry are not sensitive enough to reso...
\u3cp\u3eThe aim of the present paper is to analyse the differences between tube-based models which ...
The prediction of linear viscoelasticity (LVE) of a polymer melts from the knowledge of their struct...
The aim of the present paper is to analyse the differences between tube-based models which are widel...
The aim of the present paper is to analyse the differences between tube-based models which are widel...
The aim of the present paper is to analyse the differences between tube-based models which are widel...
Recently, Liu et al. (Macromolecules 2006, 39, 3093) showed a systematic discrepancy of tube model p...
We present a modified version of the time-marching algorithm (TMA) [van Ruymbeke et al., 2005, 2010]...
We present a modified version of the time-marching algorithm (TMA) [van Ruymbeke et al., 2005, 2010]...
We present a modified version of the time-marching algorithm (TMA) [van Ruymbeke et al., 2005, 2010]...
This study addresses the linear viscoelasticity of blends involving monodisperse comb and linear pol...
Quantitative prediction of the rheological properties of polymers will become an important tool that...
Quantitative prediction of the rheological properties of polymers will become an important tool that...
A tube and reptation model is presented which is capable of generating quantitative predictions of t...
A tube and reptation model is presented which is capable of generating quantitative predictions of t...
Standard analytical techniques like chromatography and spectrometry are not sensitive enough to reso...
\u3cp\u3eThe aim of the present paper is to analyse the differences between tube-based models which ...
The prediction of linear viscoelasticity (LVE) of a polymer melts from the knowledge of their struct...
The aim of the present paper is to analyse the differences between tube-based models which are widel...
The aim of the present paper is to analyse the differences between tube-based models which are widel...
The aim of the present paper is to analyse the differences between tube-based models which are widel...
Recently, Liu et al. (Macromolecules 2006, 39, 3093) showed a systematic discrepancy of tube model p...