Publication | Closed Access
Experimental study and modeling of a novel magnetorheological elastomer isolator
152
Citations
25
References
2013
Year
EngineeringMechanical EngineeringPolymer-based MagnetExperimental SetupMagnetoelastic MaterialsStructural EngineeringMagnetismMechanicsSeismic AnalysisVibration IsolationStructural DynamicStructural VibrationMaterials ScienceEarthquake EngineeringMre IsolatorMagnetoelasticitySeismic IsolatorCivil EngineeringSeismic IsolationGeomechanicsExperimental StudyMagnetic PropertyStructural MechanicsVibration Control
This paper reports an experimental setup aiming at evaluating the performance of a newly designed magnetorheological elastomer (MRE) seismic isolator. As a further effort to explore the field-dependent stiffness/damping properties of the MRE isolator, a series of experimental testing were conducted. Based upon the analysis of the experimental responses and the characteristics of the MRE isolator, a new model that is capable of reproducing the unique MRE isolator dynamics behaviors is proposed. The validation results verify the model's effectiveness to portray the MRE isolator. A study on the field-dependent parameters is then provided to make the model valid with fluctuating magnetic fields. To fully explore the mechanism of the proposed model, an investigation relating the dependence of the proposed model on every parameter is carried out.
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