HREL Department of Mechanical Engineering
Composite and Intelligent Materials Laboratory
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Vibration Control Using Fail-Safe Magneto-Rheological Fluid Dampers

Study of an Innovative Graphite/Epoxy Concrete Bridge Grider

A New By-Pass, Fail-Safe, Magneto-Rheological Fluid Damper

Rheological Behavior of MR Materials in Flow Mode

Dynamic Modeling of Semi-Active ER/MR Fluid Dampers

Lyapunov-Based Control of a Bridge using Magneto-Rheological Fluid Dampers

Magnetorheological Fluid Limited Slip Differential Clutch

Quater-HMMWV Suspension using Magneto-Rheological Fluid Damper

A Modular Magneto-Rheological Fluid By Pass Damper for Seismic Applications

Study of a Magnetorheological Fluid-Elastomer Composite Structure

Unified Analysis of Channel Flow of Magnetorheological Fluid

Unified Flow Analysis of MR Fluids in Channels: Surface Roughness Effects

A Full - Scale Magneto-Rheological Fluid Dampers for Heavy Vehicle Rollover Protection

Flow of Magneto -Rheological Suspensions in Microchannels

Characterization of Rheological Properties of Novel Magnetorheological Fluids

A New MR Fluid-Elastomer (MRF-E) Vibration Isolator

Sensing Capability Study of Magneto-Rheological Elastomers

Pressure Response Time of MR Valves with Various Flow Geometries
Designed by M. Behrooz.