Journal of Physics Condensed Matter · 2010 · 25 citations · 6 references
EngineeringFluid MechanicsMechanical EngineeringMagnetic ParticlesMagnetic ResonanceMicrorheologyParticle MethodActive FluidFerrofluidMagnetismNumerical SimulationCluster FormationMagnetohydrodynamicsRheologySuspended ParticlesNonmagnetic ParticlesBiophysicsParticle-laden FlowMaterials SciencePhysicsMicrostructure FormationMultiphase FlowApplied PhysicsFluid-solid InteractionMedicine
Microstructure formation of magnetic particles and nonmagnetic particles in magnetorheological (MR) fluids is investigated using the particle method simulation based on simplified Stokesian dynamics. Spherical nonmagnetic particles are rearranged in the field direction due to the formation of magnetic particles in chain-like clusters. Cluster formation of spherocylindrical magnetic particles forces spherical nonmagnetic particles to arrange in the direction of the field. In contrast, the spherocylindrical nonmagnetic particles, with an aspect ratio of two or three, are not sufficiently rearranged in the field direction by cluster formation of spherical magnetic particles. Even after cluster formation in the presence of a magnetic field, the uniformity of distribution of particles on the plane perpendicular to the field direction shows very little change. However, the deviation of uniformity in particle distribution is reduced when the volume fraction of magnetic particles is the same as that of nonmagnetic particles.
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Noritsugu Umehara · Journal of Magnetism and Magnetic Materials · 2002 · 19 citations