Simulation results of the primitive chain network (PCN) model for entangled polymers are compared here to existing data of diffusion coefficient, linear and nonlinear shear and elongational rheology of monodisperse polystyrene melts. Since the plateau modulus of polystyrene is well known from the literature, the quantitative comparison between the whole set of data and simulations only requires a single adjustable parameter, namely, a basic time. The latter, however, must be consistent with the known rheology of unentangled polystyrene melts, i.e., with Rouse behavior, and is therefore not really an adjustable parameter. The PCN model adopted here is a refined version of the original model, incorporating among other things a more accurate d...
Using molecular dynamics simulation, we investigate the evolution of chain conformation, stress rela...
Polymeric liquids possess complex properties that significantly deviate from Newtonian fluids. There...
In this thesis, we propose a new microstructural model to describe the rheology of entangled linear ...
Simulation results of the primitive chain network (PCN) model for entangled polymers are compared he...
It has been established that the elongational rheology of polymers depends on their chemistry. Howev...
Recent data of unentangled polystyrene melts in startup elongational flow and subsequent relaxation ...
AbstractThis paper reviews the research on network models of the entangled polymer melts from kineti...
The Doi−Edwards tube model, coupled with relaxation mechanisms, such as reptation, contour length fl...
A tube and reptation model is presented which is capable of generating quantitative predictions of t...
Predictions of the Doi-Edwards-Marrucci-Grizzuti (DEMG) and the Graham-Likhtman-McLeish-Milner (GLaM...
We investigate the nonlinear shear and uniaxial extensional rheology of entangled polystyrene (PS) m...
Nonlinear rheology of polymer matter is of significant relevance to many industrial and biological p...
Conceptual advances and rapidly unproved computer speed have fueled tremendous research in rheology ...
A novel simulation method that can calculate the long-time response of polymeric liquids in the enta...
State-of-the-art tube models for the dynamics of entangled polymer melts are usually validated on th...
Using molecular dynamics simulation, we investigate the evolution of chain conformation, stress rela...
Polymeric liquids possess complex properties that significantly deviate from Newtonian fluids. There...
In this thesis, we propose a new microstructural model to describe the rheology of entangled linear ...
Simulation results of the primitive chain network (PCN) model for entangled polymers are compared he...
It has been established that the elongational rheology of polymers depends on their chemistry. Howev...
Recent data of unentangled polystyrene melts in startup elongational flow and subsequent relaxation ...
AbstractThis paper reviews the research on network models of the entangled polymer melts from kineti...
The Doi−Edwards tube model, coupled with relaxation mechanisms, such as reptation, contour length fl...
A tube and reptation model is presented which is capable of generating quantitative predictions of t...
Predictions of the Doi-Edwards-Marrucci-Grizzuti (DEMG) and the Graham-Likhtman-McLeish-Milner (GLaM...
We investigate the nonlinear shear and uniaxial extensional rheology of entangled polystyrene (PS) m...
Nonlinear rheology of polymer matter is of significant relevance to many industrial and biological p...
Conceptual advances and rapidly unproved computer speed have fueled tremendous research in rheology ...
A novel simulation method that can calculate the long-time response of polymeric liquids in the enta...
State-of-the-art tube models for the dynamics of entangled polymer melts are usually validated on th...
Using molecular dynamics simulation, we investigate the evolution of chain conformation, stress rela...
Polymeric liquids possess complex properties that significantly deviate from Newtonian fluids. There...
In this thesis, we propose a new microstructural model to describe the rheology of entangled linear ...