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Deformation in magnetorheological elastomer and elastomer–ferromagnet composite driven by a magnetic field
147
Citations
10
References
2004
Year
Magnetic PropertiesEngineeringMechanical EngineeringMagnetoelastic MaterialsMagnetic MaterialsMagnetismMechanicsMaterial NonlinearitiesMaterials ScienceStrain LocalizationMechanical BehaviorMagnetorheological ElastomerSolid MechanicsMagnetoelasticityMechanical DeformationMagnetic MaterialFerromagnetismDynamic Constitutive BehaviorNatural SciencesApplied PhysicsNew ClassVector DiagramMagnetic PropertyMagnetic FieldMechanics Of Materials
Magnetorheological elastomer (MRE) is a new class of smart materials, whose modulus can be controlled by the applied magnetic field. In this paper, using a white light speckle technique for deformation analysis, we present the real-time dynamic deformation progress (the vector diagram of the displacement or the whole-field quantitative displacement distribution) of the MRE and the elastomer?ferromagnet composite (EFC) while the magnetic field is turned on. The experimental results verify the prediction presented in a recently published paper, (Borcea and Bruno 2001 J.?Mech.?Phys.?Solids 49 2877?919), and reveals some interesting phenomena which will give us a deeper understanding for such smart materials.
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