Publication: The role of thermal diffusion, particle clusters, hydrodynamic and magnetic forces on the flow behaviour of magneto-polymer composites.
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Identifiers
Date
2021-01-21
Authors
Suarez-Fernandez, William R
Duran, Juan D G
Lopez-Lopez, Modesto T
Advisors
Journal Title
Journal ISSN
Volume Title
Publisher
The Royal Society Publishing
Abstract
In this paper, we study the shear-induced flow of magneto-polymer composites, consisting of dispersions of magnetic particles in solutions of polymers, as a competition between the colloidal forces amid particles and their bulk transport induced by the hydrodynamic forces. For this aim, we analyse the role of different experimental parameters. Firstly, by using only solutions of a well-known anionic polymer (sodium alginate), we provoke a moderate hindering of particle movement, but keeping the liquid-like state of the samples. On the contrary, a gel-like behaviour is conferred to the samples when a cationic polymer (chitosan) is additionally added, which further reduces the particle movement. We analyse the effect of an applied magnetic field, which is opposed to particle transport by hydrodynamic forces, by inducing magnetic attraction between the particles. We perform the analysis under both stationary and oscillatory shear. We show that by using dimensionless numbers the differences between samples and experimental conditions are emphasized. In all cases, as expected, the transport of particles driven by bulk hydrodynamic forces dominates at high values of the shear rate. This article is part of the theme issue 'Transport phenomena in complex systems (part 1)'.
Description
MeSH Terms
Chitosan
Magnetic Fields
Alginates
Magnetic Phenomena
Hydrodynamics
Magnetic Fields
Alginates
Magnetic Phenomena
Hydrodynamics
DeCS Terms
Alginatos
Campos magnéticos
Fenómenos magnéticos
Hidrodinámica
Quitosano
Campos magnéticos
Fenómenos magnéticos
Hidrodinámica
Quitosano
CIE Terms
Keywords
Péclet number, magnetic particles, polymer solution, rheology, viscoelasticity, viscosity
Citation
Suarez-Fernandez WR, Duran JDG, Lopez-Lopez MT. The role of thermal diffusion, particle clusters, hydrodynamic and magnetic forces on the flow behaviour of magneto-polymer composites. Philos Trans A Math Phys Eng Sci. 2021 Sep 6;379(2205):20200302.