Using Brownian dynamics simulation, we determine chain dimensions in an entangled polymer melt undergoing startup shear at a rate lower than the reciprocal of the Rouse time yet higher than the reciprocal reptation time. Here the tube model expects negligible chain stretching. In contrast, our simulation shows the deformed coil to conform closely to affine deformation. We find that the total number of entanglements decreases with increasing shear. Remarkably, up to many Rouse time, the decline in the number of initial entanglements is slower than that under the quiescent condition. These results point to fundamental deficiencies in the molecular picture of the tube model for startup shear
State-of-the-art tube models for the dynamics of entangled polymer melts are usually validated on th...
This work studies the most basic and important behavior of entangled linear polymer melts in sudden ...
ABSTRACT: Discontinuous molecular dynamics simulations are performed on systems containing 32 hard c...
In this work, we have carried out Brownian dynamics simulation to describe the detailed characterist...
Conceptual advances and rapidly unproved computer speed have fueled tremendous research in rheology ...
One of the most important nonlinear rheological phenomena in flowing polymeric materials is the stre...
ABSTRACT: We use molecular dynamics simulations of the Kremer− Grest (KG) bead−spring model of polym...
This work extends our previous understanding concerning the nonlinear responses of entangled polymer...
We show for the first time that entangled polymeric liquids containing long-chain branching can exhi...
At APS2006, we reported the first PTV observations of macroscopic motions after shear cessation from...
We revisit the nonuniversal aspect of polymer dynamics by considering both new and existing data on ...
Start-up shear rheology is a standard experiment used for characterizing polymer flow, and to test v...
We present molecular dynamics (MD) and slip-springs model simulations of the chain segmental dynamic...
Using molecular dynamics simulation, we investigate the evolution of chain conformation, stress rela...
It is well-known that the packing model (Fetters and co-workers) shows the relationship between micr...
State-of-the-art tube models for the dynamics of entangled polymer melts are usually validated on th...
This work studies the most basic and important behavior of entangled linear polymer melts in sudden ...
ABSTRACT: Discontinuous molecular dynamics simulations are performed on systems containing 32 hard c...
In this work, we have carried out Brownian dynamics simulation to describe the detailed characterist...
Conceptual advances and rapidly unproved computer speed have fueled tremendous research in rheology ...
One of the most important nonlinear rheological phenomena in flowing polymeric materials is the stre...
ABSTRACT: We use molecular dynamics simulations of the Kremer− Grest (KG) bead−spring model of polym...
This work extends our previous understanding concerning the nonlinear responses of entangled polymer...
We show for the first time that entangled polymeric liquids containing long-chain branching can exhi...
At APS2006, we reported the first PTV observations of macroscopic motions after shear cessation from...
We revisit the nonuniversal aspect of polymer dynamics by considering both new and existing data on ...
Start-up shear rheology is a standard experiment used for characterizing polymer flow, and to test v...
We present molecular dynamics (MD) and slip-springs model simulations of the chain segmental dynamic...
Using molecular dynamics simulation, we investigate the evolution of chain conformation, stress rela...
It is well-known that the packing model (Fetters and co-workers) shows the relationship between micr...
State-of-the-art tube models for the dynamics of entangled polymer melts are usually validated on th...
This work studies the most basic and important behavior of entangled linear polymer melts in sudden ...
ABSTRACT: Discontinuous molecular dynamics simulations are performed on systems containing 32 hard c...