Paper
19 May 2020 Modeling the behavior of magnetorheological elastomers under different loading conditions
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Abstract
This paper presents a rheological model that was developed to stimulate the experimental behavior of magnetorheological elastomers (MREs) under varying loading conditions (magnetic field, strain amplitude and frequency). Magnetorheological elastomers (MREs) were fabricated and tested using double lap shear experiment setup under different strain amplitudes, magnetic fields and frequencies. A linear visco-elastic rheological model consists of seven parameters to represent both viscous and elastic behavior of MREs. The parameters under varying loading conditions were identified and optimized using the data recorded from experiments. The experimental results were then compared with model predicted values which demonstrate that the seven-parameter model predicts MRE behavior well.
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Siddaiah Yarra, Gokhan Pekcan, and Faramarz Gordaninejad "Modeling the behavior of magnetorheological elastomers under different loading conditions", Proc. SPIE 11376, Active and Passive Smart Structures and Integrated Systems XIV, 113760H (19 May 2020); https://doi.org/10.1117/12.2559275
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KEYWORDS
Magnetism

Particles

Iron

Carbon

Civil engineering

Data modeling

Performance modeling

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