This work addresses the shear response of entangled linear polymers by assessing the current state-of-the-art model and proposing alternative directions. In particular, we examine the performance of the Graham-Likhtman-McLeish-Milner (GLaMM) nonlinear tube model in fast shear flows. Predictions are compared against experimental data for well-characterized, monodisperse, entangled linear polystyrene chains. Unlike previous works using the GLaMM model, finite extensibility is accounted for. Comparison of model predictions and data not only reveals an overall reasonable performance but also highlights limitations. For example, the predictions significantly depend on whether the contribution of contour length fluctuations to the retraction rate...
We present a tube-based constitutive model for polydisperse entangled linear polymers. The model is ...
The relaxation dynamics of molten monodisperse polymers are well described by tube-based theories in...
We have modified the full-chain stochastic tube (XDS) model developed by Xu et al. [J. Rheol. 50, 47...
This work addresses the shear response of entangled linear polymers by assessing the current state-o...
Nonlinear rheology of polymer matter is of significant relevance to many industrial and biological p...
This work evaluates the performance of the Rolie-Poly (RP) model in uniaxial elongation and shear. P...
Predictions of the Doi-Edwards-Marrucci-Grizzuti (DEMG) and the Graham-Likhtman-McLeish-Milner (GLaM...
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...
This work aims to improve the use of Molecular Dynamics simulations of Kremer-Grest chains to inform...
We consider the response of entangled four-arm polybutadiene star solutions to steady shear and to s...
A new model is presented for describing the time‐dependent flow of entangled polymer liquids at high...
Recently we revisited the mesoscopic theory of linear, entangled polymer chains under fast shear def...
A variety of rheological measurements including oscillatory shear and steady shear in both controlle...
Our main goal is to provide insight on the non-linear shear rheology of entangled polymer chains. Mo...
We present a tube-based constitutive model for polydisperse entangled linear polymers. The model is ...
The relaxation dynamics of molten monodisperse polymers are well described by tube-based theories in...
We have modified the full-chain stochastic tube (XDS) model developed by Xu et al. [J. Rheol. 50, 47...
This work addresses the shear response of entangled linear polymers by assessing the current state-o...
Nonlinear rheology of polymer matter is of significant relevance to many industrial and biological p...
This work evaluates the performance of the Rolie-Poly (RP) model in uniaxial elongation and shear. P...
Predictions of the Doi-Edwards-Marrucci-Grizzuti (DEMG) and the Graham-Likhtman-McLeish-Milner (GLaM...
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...
This work aims to improve the use of Molecular Dynamics simulations of Kremer-Grest chains to inform...
We consider the response of entangled four-arm polybutadiene star solutions to steady shear and to s...
A new model is presented for describing the time‐dependent flow of entangled polymer liquids at high...
Recently we revisited the mesoscopic theory of linear, entangled polymer chains under fast shear def...
A variety of rheological measurements including oscillatory shear and steady shear in both controlle...
Our main goal is to provide insight on the non-linear shear rheology of entangled polymer chains. Mo...
We present a tube-based constitutive model for polydisperse entangled linear polymers. The model is ...
The relaxation dynamics of molten monodisperse polymers are well described by tube-based theories in...
We have modified the full-chain stochastic tube (XDS) model developed by Xu et al. [J. Rheol. 50, 47...