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Kinetics of internal structures growth in magnetic suspensions

Author

Listed:
  • Bossis, G.
  • Lançon, P.
  • Meunier, A.
  • Iskakova, L.
  • Kostenko, V.
  • Zubarev, A.

Abstract

The kinetics of aggregation of non Brownian magnetizable particles in the presence of a magnetic field is studied both theoretically and by means of computer simulations. A theoretical approach is based on a system of Smoluchowski equations for the distribution function of the number of particles in linear chain-like aggregates. Results obtained in the two dimensional (2D) and three dimensional (3D) models are analyzed in relation with the size of the cell, containing the particles, and the particle volume fraction φ. The theoretical model reproduces the change of the aggregation kinetics with the size of the cell and with the particle volume fraction as long as the lateral aggregation of chains is negligible.

Suggested Citation

  • Bossis, G. & Lançon, P. & Meunier, A. & Iskakova, L. & Kostenko, V. & Zubarev, A., 2013. "Kinetics of internal structures growth in magnetic suspensions," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 392(7), pages 1567-1576.
  • Handle: RePEc:eee:phsmap:v:392:y:2013:i:7:p:1567-1576
    DOI: 10.1016/j.physa.2012.11.029
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