A simple molecular model is studied to explain wall slip in a polymer melt. We consider a tube model for tethered chains in which the most important relaxation mechanisms: convective constraint release and chain stretching (retraction), are incorporated. Furthermore, we take the interactions between tethered chains and bulk flow self-consistently into account. Numerical simulations show that our model exhibits an entanglement-disentanglement transition, leading to a jump in the slip velocity which increases with the number of entanglements and the grafting density. The wall shear stress is found to be a nonmonotonic function of the slip and plate velocity, yielding the possibility of hysteresis and spurt instabilities. In a simplified versi...
A molecular model for wall slip based on recent tube theories is extended to account for the effects...
In a preceeding report we derived the evolution equation for the bond vector probability distributio...
The flow behaviour of melts of short chains, confined in molecularly thin Couette flow geometries, i...
A simple molecular model is studied to explain wall slip in a polymer melt. We consider a tube model...
Wall slip in polymer solutions and melts play an important role in fluid flow, heat transfer and mas...
A tube model is proposed for predicting wall slip phenomenon driven by the interfacial "disentanglem...
A molecular model is proposed which predicts wall slip by disentanglement of polymer chains adsorbed...
In this work, it is attempted to theoretically understand the phenomenon of wall slip through empiri...
ABSTRACT: A tube model is proposed for predicting wall slip phenomenon driven by the interfacial “di...
We perform nonequilibrium molecular dynamics shear flow simulations of an entangled polymer melt con...
A unified slip model is developed, which predicts wall slip by either a disentanglement mechanism or...
We perform non-equilibrium molecular dynamics (MD) shear-flow simulations of an entangled polymer me...
In some recent experiments on entangled polymers of stress growth in the startup of fast shear flows...
We present experimental data demonstrating wall slip of high temperature polymer melts at high shear...
iAbstract Polymer – surface interactions strongly influence many important industrial and rheologica...
A molecular model for wall slip based on recent tube theories is extended to account for the effects...
In a preceeding report we derived the evolution equation for the bond vector probability distributio...
The flow behaviour of melts of short chains, confined in molecularly thin Couette flow geometries, i...
A simple molecular model is studied to explain wall slip in a polymer melt. We consider a tube model...
Wall slip in polymer solutions and melts play an important role in fluid flow, heat transfer and mas...
A tube model is proposed for predicting wall slip phenomenon driven by the interfacial "disentanglem...
A molecular model is proposed which predicts wall slip by disentanglement of polymer chains adsorbed...
In this work, it is attempted to theoretically understand the phenomenon of wall slip through empiri...
ABSTRACT: A tube model is proposed for predicting wall slip phenomenon driven by the interfacial “di...
We perform nonequilibrium molecular dynamics shear flow simulations of an entangled polymer melt con...
A unified slip model is developed, which predicts wall slip by either a disentanglement mechanism or...
We perform non-equilibrium molecular dynamics (MD) shear-flow simulations of an entangled polymer me...
In some recent experiments on entangled polymers of stress growth in the startup of fast shear flows...
We present experimental data demonstrating wall slip of high temperature polymer melts at high shear...
iAbstract Polymer – surface interactions strongly influence many important industrial and rheologica...
A molecular model for wall slip based on recent tube theories is extended to account for the effects...
In a preceeding report we derived the evolution equation for the bond vector probability distributio...
The flow behaviour of melts of short chains, confined in molecularly thin Couette flow geometries, i...