The collective periodic motions of liquid-crystalline polymers in a nematic phase in shear flow have, for the first time, been simulated at the particle level by Brownian dynamics simulations. A wide range of parameter space has been scanned by varying the aspect ratio L/D between 10 and 60 at three different scaled volume fractions L/D and an extensive series of shear rates. The influence of the start configuration of the box on the final motion has also been studied. Depending on these parameters, the motion of the director is either characterized as tumbling, kayaking, log-rolling, wagging, or flow-aligning. The periods of kayaking and wagging motions are given by T=4.2(L/D)–1 for high aspect ratios. Our simulation results are in agreeme...
We present an accurate and efficient numerical method to the solve the microstructure-flow problem t...
We present an accurate and efficient numerical method to the solve the microstructure-flow problem t...
We present an accurate and efficient numerical method to the solve the microstructure-flow problem t...
For the first time, we have simulated the periodic collective orientational motions performed by rig...
Rod-like colloids in dense solutions perform collective orientational motions under shear flow. The ...
The flow behavior of (both low molecular weight and polymeric) liquid crystals is strongly affected ...
Shear viscosities as well as first and second normal stress differences of solutions of rigid sphero...
We report on the shear rheology of liquid crystalline solutions composed of charged, rodlike polymer...
We study nematodynamics of a mesoscopic system consisting of sheared biaxial liquid crystalline poly...
In the shear flow of liquid crystalline polymers (LCPs) the nematic director orientation can align w...
Rod-like colloids in dense solutions perform collective orientational motions under shear flow. The ...
Rodlike polymers are investigated in the nematic liquid-crystalline phase. The polymers' irregular d...
In the shear flow of liquid crystalline polymers (LCPs) the nematic director orientation can align w...
We present an accurate and efficient numerical method to the solve the microstructure-flow problem t...
We study stable equilibria of liquid crystals in the flow being at rest and the stable dynamic state...
We present an accurate and efficient numerical method to the solve the microstructure-flow problem t...
We present an accurate and efficient numerical method to the solve the microstructure-flow problem t...
We present an accurate and efficient numerical method to the solve the microstructure-flow problem t...
For the first time, we have simulated the periodic collective orientational motions performed by rig...
Rod-like colloids in dense solutions perform collective orientational motions under shear flow. The ...
The flow behavior of (both low molecular weight and polymeric) liquid crystals is strongly affected ...
Shear viscosities as well as first and second normal stress differences of solutions of rigid sphero...
We report on the shear rheology of liquid crystalline solutions composed of charged, rodlike polymer...
We study nematodynamics of a mesoscopic system consisting of sheared biaxial liquid crystalline poly...
In the shear flow of liquid crystalline polymers (LCPs) the nematic director orientation can align w...
Rod-like colloids in dense solutions perform collective orientational motions under shear flow. The ...
Rodlike polymers are investigated in the nematic liquid-crystalline phase. The polymers' irregular d...
In the shear flow of liquid crystalline polymers (LCPs) the nematic director orientation can align w...
We present an accurate and efficient numerical method to the solve the microstructure-flow problem t...
We study stable equilibria of liquid crystals in the flow being at rest and the stable dynamic state...
We present an accurate and efficient numerical method to the solve the microstructure-flow problem t...
We present an accurate and efficient numerical method to the solve the microstructure-flow problem t...
We present an accurate and efficient numerical method to the solve the microstructure-flow problem t...