We investigate the shear-induced structure formation of colloidal particles dissolved in non-Newtonian fluids by means of computer simulations. The two investigated visco-elastic fluids are a semi-dilute polymer solution and a worm-like micellar solution. Both shear-thinning fluids contain long flexible chains whose entanglements appear and disappear continually as a result of Brownian motion and the applied shear flow. To reach sufficiently large time and length scales in three-dimensional simulations with up to 96 spherical colloids, we employ the responsive particle dynamics simulation method of modeling each chain as a single soft Brownian particle with slowly evolving inter-particle degrees of freedom accounting for the entanglements. ...
The alignment and the aggregation of particles in a viscoelastic fluid in simple shear flow are qual...
The alignment and the aggregation of particles in a viscoelastic fluid in simple shear flow are qual...
The alignment and the aggregation of particles in a viscoelastic fluid in simple shear flow are qual...
We investigate the shear-induced structure formation of colloidal particles dissolved in non-Newtoni...
We investigate the shear-induced structure formation of colloidal particles dissolved in non-Newtoni...
We investigate the shear-induced structure formation of colloidal particles dissolved in non-Newtoni...
We investigate the shear-induced structure formation of colloidal particles dissolved in non-Newtoni...
We investigate the shear-induced structure formation of colloidal particles dissolved in non-Newtoni...
We investigate the shear-induced structure formation of colloidal particles dissolved in non-Newtoni...
We have studied the poorly understood process of flow-induced structure formation by colloids suspen...
Computer simulations are presented of colloids, bidisperse in size, suspended in a shear-thinning vi...
Computer simulations are presented of colloids, bidisperse in size, suspended in a shear-thinning vi...
Computer simulations are presented of colloids, bidisperse in size, suspended in a shear-thinning vi...
ABSTRACT: Hard spheres in Newtonian fluids serve as paradigms for non-Newtonian materials phenomena ...
Rigid particles suspended in viscoelastic fluids under shear can align in string-like struc- tures i...
The alignment and the aggregation of particles in a viscoelastic fluid in simple shear flow are qual...
The alignment and the aggregation of particles in a viscoelastic fluid in simple shear flow are qual...
The alignment and the aggregation of particles in a viscoelastic fluid in simple shear flow are qual...
We investigate the shear-induced structure formation of colloidal particles dissolved in non-Newtoni...
We investigate the shear-induced structure formation of colloidal particles dissolved in non-Newtoni...
We investigate the shear-induced structure formation of colloidal particles dissolved in non-Newtoni...
We investigate the shear-induced structure formation of colloidal particles dissolved in non-Newtoni...
We investigate the shear-induced structure formation of colloidal particles dissolved in non-Newtoni...
We investigate the shear-induced structure formation of colloidal particles dissolved in non-Newtoni...
We have studied the poorly understood process of flow-induced structure formation by colloids suspen...
Computer simulations are presented of colloids, bidisperse in size, suspended in a shear-thinning vi...
Computer simulations are presented of colloids, bidisperse in size, suspended in a shear-thinning vi...
Computer simulations are presented of colloids, bidisperse in size, suspended in a shear-thinning vi...
ABSTRACT: Hard spheres in Newtonian fluids serve as paradigms for non-Newtonian materials phenomena ...
Rigid particles suspended in viscoelastic fluids under shear can align in string-like struc- tures i...
The alignment and the aggregation of particles in a viscoelastic fluid in simple shear flow are qual...
The alignment and the aggregation of particles in a viscoelastic fluid in simple shear flow are qual...
The alignment and the aggregation of particles in a viscoelastic fluid in simple shear flow are qual...