Ordering induced by shear now can be Used to direct the assembly of particles in Suspensions. Flow-induced ordering is determined by the balance between a range of forces, such as direct interparticle, Brownian, and hydrodynamic forces. The latter are modified when dealing with viscoelastic rather than Newtonian matrices. In particular, 1D stringlike structures of spherical particles have been observed to form along the flow direction in shear thinning viscoelastic fluids, a phenomenon not observed in Newtonian fluids at similar particle volume fractions. Here we report oil the formation of freestanding crystalline patches in planes parallel to the shearing surfaces. The novel microstructure is formed when particles are suspended in viscoel...
Flow-induced structures in suspensions contain- ing spheres in viscoelastic suspending media were i...
Colloidal suspensions self-assemble into equilibrium structures ranging from face- and body-centered...
ABSTRACT: Hard spheres in Newtonian fluids serve as paradigms for non-Newtonian materials phenomena ...
Ordering induced by shear flow can be used to create specific microstructures in particle suspension...
Ordering induced by shear flow can be used to create specific microstructures in particle suspension...
Ordering induced by shear flow can be used to create specific microstructures in particle suspension...
Flow-induced structures in suspensions containing spheres in viscoelastic suspending media were inve...
Flow-Induced Self-Assembly (FISA) is the flow-driven formation of ordered structures in complex flui...
Flow-Induced Self-Assembly (FISA) is the flow-driven formation of ordered structures in complex flui...
Flow-Induced Self-Assembly (FISA) is the flow-driven formation of ordered structures in complex flui...
Monodisperse suspensions of Brownian colloidal spheres crystallize at high densities, and ordering u...
We have studied the poorly understood process of flow-induced structure formation by colloids suspen...
Flow-induced structures in suspensions contain- ing spheres in viscoelastic suspending media were i...
Flow-induced structures in suspensions contain- ing spheres in viscoelastic suspending media were i...
Flow-induced structures in suspensions contain- ing spheres in viscoelastic suspending media were i...
Flow-induced structures in suspensions contain- ing spheres in viscoelastic suspending media were i...
Colloidal suspensions self-assemble into equilibrium structures ranging from face- and body-centered...
ABSTRACT: Hard spheres in Newtonian fluids serve as paradigms for non-Newtonian materials phenomena ...
Ordering induced by shear flow can be used to create specific microstructures in particle suspension...
Ordering induced by shear flow can be used to create specific microstructures in particle suspension...
Ordering induced by shear flow can be used to create specific microstructures in particle suspension...
Flow-induced structures in suspensions containing spheres in viscoelastic suspending media were inve...
Flow-Induced Self-Assembly (FISA) is the flow-driven formation of ordered structures in complex flui...
Flow-Induced Self-Assembly (FISA) is the flow-driven formation of ordered structures in complex flui...
Flow-Induced Self-Assembly (FISA) is the flow-driven formation of ordered structures in complex flui...
Monodisperse suspensions of Brownian colloidal spheres crystallize at high densities, and ordering u...
We have studied the poorly understood process of flow-induced structure formation by colloids suspen...
Flow-induced structures in suspensions contain- ing spheres in viscoelastic suspending media were i...
Flow-induced structures in suspensions contain- ing spheres in viscoelastic suspending media were i...
Flow-induced structures in suspensions contain- ing spheres in viscoelastic suspending media were i...
Flow-induced structures in suspensions contain- ing spheres in viscoelastic suspending media were i...
Colloidal suspensions self-assemble into equilibrium structures ranging from face- and body-centered...
ABSTRACT: Hard spheres in Newtonian fluids serve as paradigms for non-Newtonian materials phenomena ...