4.6 Article

An innovative multi-gap clutch based on magneto-rheological fluids and electrodynamic effects: magnetic design and experimental characterization

期刊

SMART MATERIALS AND STRUCTURES
卷 26, 期 1, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/0964-1726/26/1/015007

关键词

magneto-rheological fluid; eddy currents; electromagnetic torque; magneto-rheological clutch

资金

  1. Pierburg Pump Technology Italy, S.p.A. - Regione Toscana, P.O.R., C.R.e.O., F.E.S.R.

向作者/读者索取更多资源

In this paper an innovative multi-gap magnetorheological clutch is described. It is inspired by a device previously developed by the author's research group and contains a novel solution based on electrodynamic effects, capable to considerably improve the transmissible torque during the engagement phase. Since this (transient) phase is characterized by a non-zero angular speed between the two clutch shafts, the rotation of a permanent magnets system, used to excite the fluid, induces eddy currents on some conductive material strategically positioned in the device. As a consequence, an electromagnetic torque is produced which is added to the torque transmitted by the magnetorheological fluid only. Once the clutch is completely engaged and the relative speed between the two shafts is zero, the electrodynamic effects vanish and the device operates like a conventional magnetorheological clutch. The system is investigated and designed by means a 3D FEM model and the performance of the device is experimentally validated on a prototype.

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