Article ID Journal Published Year Pages File Type
1798322 Journal of Magnetism and Magnetic Materials 2016 6 Pages PDF
Abstract

•Normal force of MR fluids with metal foam under oscillatory shear modes was studied.•The shear gap was step-wise increased with magnetic fields.•The magnetic field has a greater impact on the normal force.

The normal force of magnetorheological (MR) fluids in porous foam metal was investigated in this paper. The dynamic repulsive normal force was studied using an advanced commercial rheometer under oscillatory shear modes. In the presence of magnetic fields, the influences of time, strain amplitude, frequency and shear rate on the normal force of MR fluids drawn from the porous foam metal were systematically analysed. The experimental results indicated that the magnetic field had the greatest effect on the normal force, and the effect increased incrementally with the magnetic field. Increasing the magnetic field produced a step-wise increase in the shear gap. However, other factors in the presence of a constant magnetic field only had weak effects on the normal force. This behaviour can be regarded as a magnetic field-enhanced normal force, as increases in the magnetic field resulted in more MR fluids being released from the porous foam metal, and the chain-like magnetic particles in the MR fluids becoming more elongated with aggregates spanning the gap between the shear plates.

Related Topics
Physical Sciences and Engineering Physics and Astronomy Condensed Matter Physics
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