Elastic Properties of Magnetorheological Elastomers in a Heterogeneous Uniaxial Magnetic Field.

Takehito Kikuchi, Yusuke Kobayashi, Mika Kawai, Tetsu Mitsumata

Journal: International journal of molecular sciences 2019;19(10):3045

PMID: 30301215

Abstract

Magnetorheological elastomers (MREs) are stimulus-responsive soft materials that consist of polymeric matrices and magnetic particles. In this study, large-strain response of MREs with 5 vol % of carbonyl iron (CI) particles is experimentally characterized for two different conditions: (1) shear deformation in a uniform magnetic field; and (2), compression in a heterogeneous uniaxial magnetic field. For condition (1), dynamic viscoelastic measurements were performed using a rheometer with a rotor disc and an electric magnet that generated a uniform magnetic field on disc-like material samples. For condition (2), on the other hand, three permanent magnets with different surface flux densities were used to generate a heterogeneous uniaxial magnetic field under cylindrical material samples. The experimental results were mathematically modeled, and the relationship between them was investigated. We also used finite-element method (FEM) software to estimate the uniaxial distributions of the magnetic field in the analyzed MREs for condition (2), and developed mathematical models to describe these phenomena. By using these practicable techniques, we established a simple macroscale model of the elastic properties of MREs under simple compression. We estimated the elastic properties of MREs in the small-strain regime (neo⁻Hookean model) and in the large-strain regime (Mooney⁻Rivlin model). The small-strain model explains the experimental results for strains under 5%. On the other hand, the large-strain model explains the experimental results for strains above 10%.

Address: Faculty of Science & Technology, Oita University, Oita 870-1192, Japan. [email protected].; Faculty of Engineering, Niigata University, Niigata 950-2181, Japan. [email protected].; Graduate School of Science and Technology, Niigata University, Niigata 950-2181, Japan. [email protected].; ALCA, Japan Science and Technology Agency, Tokyo 102-0076, Japan. [email protected].; Graduate School of Science and Technology, Niigata University, Niigata 950-2181, Japan. [email protected].; ALCA, Japan Science and Technology Agency, Tokyo 102-0076, Japan. [email protected].
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