[go: up one dir, main page]

Gopalakrishnan et al., 2004 - Google Patents

Effect of attractions on shear thickening in dense suspensions

Gopalakrishnan et al., 2004

View PDF
Document ID
1930808036636087100
Author
Gopalakrishnan V
Zukoski C
Publication year
Publication venue
Journal of Rheology

External Links

Snippet

Shear thickening in dense suspensions is investigated as the strength of interparticle attraction is increased. Starting with hard spheres, attractions are induced through depletion interactions up to and beyond the point where the suspensions gel and the zero shear rate …
Continue reading at pubs.aip.org (PDF) (other versions)

Similar Documents

Publication Publication Date Title
Gopalakrishnan et al. Effect of attractions on shear thickening in dense suspensions
Willenbacher et al. Rheology of disperse systems
Boersma et al. Shear thickening (dilatancy) in concentrated dispersions
Morris Lubricated-to-frictional shear thickening scenario in dense suspensions
Frith et al. Shear thickening in model suspensions of sterically stabilized particles
Maranzano et al. The effects of interparticle interactions and particle size on reversible shear thickening: Hard-sphere colloidal dispersions
Coussot et al. Macroscopic vs. local rheology of yield stress fluids
Mahbubul et al. Influence of ultrasonication duration on rheological properties of nanofluid: an experimental study with alumina–water nanofluid
Esfe et al. Analysis of rheological behavior of MWCNT-Al2O3 (10: 90)/5W50 hybrid non-Newtonian nanofluid with considering viscosity as a three-variable function
Mewis et al. Shear thickening in steady and superposition flows effect of particle interaction forces
US9045710B2 (en) Electrorheological fluids and methods
Tajik Jamal-Abad et al. An experimental investigation of rheological characteristics of non-Newtonian nanofluids
Zhang et al. Rheological behaviors of fumed silica/low molecular weight hydroxyl silicone oil
Petekidis et al. Rheology of colloidal glasses and gels
Röhl et al. Influence of different silica nanoparticles on drop size distributions in agitated liquid‐liquid systems
Cwalina et al. Rheology of cubic particles in a concentrated colloidal dispersion suspending medium
Kundu et al. Study the electro-viscous effect on stability and rheological behavior of surfactant-stabilized emulsions
Laxton et al. Gel trapping of dense colloids
Zhang et al. Study on strain stiffening of non-colloidal suspension in oscillating shear by a subsequent steady shear test
Mirsepassi et al. Particle chaining and chain dynamics in viscoelastic liquids
Smith et al. Flow properties of hard structured particle suspensions
Valdez et al. Small-deformation rheology of mesquite gum stabilized oil in water emulsions
Schmidt et al. Reological behaviour of concentrated monodisperse suspensions as a function of preshear conditions and temperature: an experimental study
Anderson et al. Colloidal glass transition in unentangled polymer nanocomposite melts
Tadros Basic Principles of Dispersions