Performance Testing and Analysis of Isotropic Magnetorheological Elastomer
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School of Mechatronics and Vehicle Engineering, East China Jiaotong University, Nanchang 330013 , China

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TP391.4

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    Abstract:

    In order to obtain the trend of the properties of magnetorheological elastomer (MRE) with the applied magnetic flux density and excitation frequency, MREs with different ratios were prepared to investigate the relative MR effects and shear modulus properties. Three kinds of MRE samples were prepared based on the silicone rubber and silicone oil mass fraction ratio of 3∶2, and high viscosity silicone oil was selected to analyze the changes of energy storage modulus and shear modulus with magnetic flux density under oscillatory shear mode with different ratios, different shear strains, and shear frequencies, as well as the trends of MRE normal force under different preloads. The experimental results show that the energy storage modulus, shear modulus and normal force of MRE increase with the increase of magnetic flux density. The results indicate that the maximum change of the MRE normal force increases by 31.6% when the preload is increased from 5 N to 25 N. When the magnetic flux density increases from 0 to 0.8 T, the maximum energy storage modulus of sample 3 is 2.25 MPa, with a maximum relative MRE effect of 1 465.60%, and the maximum shear modulus of sample 3 is 2.25 MPa,which is an increase of 1 400.00% compared to the zero-field case. This experiment shows that MRE is suitable for high-frequency and low-shear strain application, and iron powder with 80% mass fraction can effectively improve the mechanical properties of MRE.

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尧子健,胡国良,喻理梵,朱文才.各向同性磁流变弹性体性能测试及研究[J].华东交通大学学报英文版,2025,42(1):97-104.
Yao Zijian, Hu Guoliang, Yu Lifan, Zhu Wencai. Performance Testing and Analysis of Isotropic Magnetorheological Elastomer[J]. JOURNAL OF EAST CHINA JIAOTONG UNIVERSTTY,2025,42(1):97-104

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  • Received:May 22,2024
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  • Online: March 24,2025
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