2006international conference on Modelling and simulationRequires access

Magneto-rheological fluid dampers modeling: numerical and experimental

Naser Yasrebi, A. Ghazavi, Mahmoud Mousavi Mashhadi, Aghil Yousefi‐Koma

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Abstract

In this paper a finite element analysis of magnetorheological fluid (MR) damper is presented. Electromegnetical and fluid flow analyses have been performed separately. Finite element results are then compared with experimental results obtained from an MR damper, UTMR83, fabricated damper in University of Tehran. Results matched well and showed that MR damper model developed here is accurate and can be use for design and control purposes.

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What this paper is about

In this paper a finite element analysis of magnetorheological fluid (MR) damper is presented. Electromegnetical and fluid flow analyses have been performed separately. Finite element results are then compared with experimental results obtained from an MR damper, UTMR83, fabricated damper in University of Tehran. Results matched well and showed that MR damper model developed here is accurate and can be use for design and control purposes.

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Available abstract

In this paper a finite element analysis of magnetorheological fluid (MR) damper is presented. Electromegnetical and fluid flow analyses have been performed separately. Finite element results are then compared with experimental results obtained from an MR damper, UTMR83, fabricated damper in University of Tehran. Results matched well and showed that MR damper model developed here is accurate and can be use for design and control purposes.

Key concepts: Magnetorheological fluid, Damper, Finite element method, Rheology, Structural engineering, Fluid dynamics, Materials science, Flow (mathematics)

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