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Shear thinning and thickening in dispersions of spherical nanoparticles
E. Küçüksönmez,
J. Servantie
Department of Physics Engineering
Istanbul Technical University
Research output
:
Contribution to journal
›
Article
›
peer-review
22
Citations (Scopus)
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Keyphrases
Nanoparticles
100%
Shear Thinning
100%
Shear Thickening
100%
Spherical Nanoparticles
100%
Shear Rate
75%
Volume Fraction
50%
Rate of Increase
50%
Nanoparticle Volume Fraction
50%
Simple Fluids
50%
Viscosity
25%
Shear Force
25%
Molecular Dynamics Study
25%
Low Volume
25%
Order-disorder Transition
25%
Thinning Regime
25%
Brownian Force
25%
Disordered State
25%
Metastability
25%
Ordered State
25%
Ordered Layers
25%
Engineering
Nanoparticle
100%
Shear Thickening
100%
Shear Thinning
100%
Shear Rate Increase
25%
Fluid Viscosity
12%
Shear Force
12%
Shear Rate
12%
Order Disorder Transition
12%
Metastable State
12%
Shear Thinning/Thickening Behavior
12%
Material Science
Nanoparticle
100%
Volume Fraction
50%
Metastability
12%
Crystal Structure
12%
Chemical Engineering
Nanoparticle
100%