Design and Development of Internal Wound Magnetorheological Elastomer Mount for Structural Vibration Isolation

dc.contributor.authorBhat, S.H.
dc.contributor.authorSaroj, A.A.
dc.contributor.authorKumar, H.
dc.contributor.authorArun, M.
dc.contributor.authorVaidyanathan, R.V.
dc.date.accessioned2026-02-03T13:19:36Z
dc.date.issued2025
dc.description.abstractVibration isolation of structures is crucial for enhancing reliability when subjected to mechanical vibrations and shocks. This research investigates the application of Magneto-Rheological Elastomer (MRE) mounts to mitigate vibrations in a 15 kg structure. A unique MRE mount with internal windings was designed and developed using magneto-static analysis with maximizing magnetic flux density across MRE through the Design of Experiments (DoE). MRE samples were prepared considering 20, 40 and 60% (wt.) carbonyl iron particle (CIP) content within a silicon elastomer matrix and analyzed under a rheometer. Further, these MRE samples were considered for forced vibration studies with structures placed on MRE mounts across different frequencies. Repeated experiments with all in-house MRE samples demonstrated that the MRE mount significantly mitigated vibrations at different currents and compositions. The transmissibility plot revealed a maximum amplitude reduction of 3.73 times for the 60% MRE sample. These results underscore the importance of optimizing MRE mount and CIP content for effective vibration isolation, which is vital for prolonging the operational lifespan of critical structures. © The Institution of Engineers (India) 2025.
dc.identifier.citationJournal of The Institution of Engineers (India): Series C, 2025, 106, 4, pp. 1039-1055
dc.identifier.issn22500545
dc.identifier.urihttps://doi.org/10.1007/s40032-025-01213-9
dc.identifier.urihttps://idr.nitk.ac.in/handle/123456789/20159
dc.publisherSpringer
dc.subjectElastomers
dc.subjectMagnetos
dc.subjectPlastics
dc.subjectStructural dynamics
dc.subjectVibration analysis
dc.subjectCarbonyl iron particles
dc.subjectDesign and Development
dc.subjectFlux densities
dc.subjectMagneto-Static analysis
dc.subjectMagnetorheological elastomers
dc.subjectMechanical
dc.subjectParticle content
dc.subjectStructural vibrations
dc.subjectTransmissibility
dc.subjectVibration isolations
dc.subjectDesign of experiments
dc.titleDesign and Development of Internal Wound Magnetorheological Elastomer Mount for Structural Vibration Isolation

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