Selected ETH Polymer Physics publications

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Article   P. Ilg, S. Hess
Nonequilibrium Dynamics and Magnetoviscosity of Moderately Concentrated Magnetic Liquids: A dynamic Mean-field Study
Z. Naturforsch. A 58 (2003) 589-600
A mean-field Fokker-Planck equation approach to the dynamics of ferrofluids in the presence of a magnetic field and velocity gradients is proposed that incorporates magnetic dipole-dipole interactions of the colloidal particles. The model allows to study the combined effect of a magnetic field and dipolar interactions on the viscosity of the ferrofluid. It is found that dipolar interactions lead to additional non-Newtonian contributions to the stress tensor, which modify the behavior of the non-interacting system. The predictions of the present model are in qualitative agreement with experimental results, such the enhancement as well as the different anisotropy of the magnetoviscous effect and the dependence on the symmetric velocity gradient.


for LaTeX users
@article{PIlg2003-58,
 author = {P. Ilg and S. Hess},
 title = {Nonequilibrium Dynamics and Magnetoviscosity of Moderately Concentrated Magnetic Liquids: A dynamic Mean-field Study},
 journal = {Z. Naturforsch. A},
 volume = {58},
 pages = {589-600},
 year = {2003}
}

\bibitem{PIlg2003-58} P. Ilg, S. Hess,
Nonequilibrium Dynamics and Magnetoviscosity of Moderately Concentrated Magnetic Liquids: A dynamic Mean-field Study,
Z. Naturforsch. A {\bf 58} (2003) 589-600.

PIlg2003-58
P. Ilg, S. Hess
Nonequilibrium Dynamics and Magnetoviscosity of Moderately Concentrated Magnetic Liquids: A dynamic Mean-field Study
Z. Naturforsch. A,58,2003,589-600


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