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The study on the mechanical properties of magnetorheological elastomers under triaxial compression

机译:三轴压缩下磁流变弹性体力学性能研究

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摘要

In order to design magnetorheological elastomers (MREs) based craftsmanship for metal forming, a comprehensive study on the mechanical properties of MREs under triaxial compression is required. An experimental setup integrating free compression and triaxial compression is designed to characterize isotropic MREs specimens under compression mode. The results showed that the MREs specimen in mold had successively experienced free compression stage, transition stage and triaxial compression stage during the experiment. The stress-strain curves of the MREs specimen changed when the concentration of magnetic particles increased from 0 to 44.7%, and the strain required to reach the transition stage was reduced. The effect of magnetic flux density on the stress-strain curves of the MREs specimen depended on the concentration of magnetic particles. The measured data obtained at different strain rates revealed maximum changes of 15.7% and 0.096% in volume compression modulus and Poisson ratio, respectively, which occurred under the magnetic flux density of 200 mT and CIP concentrations of v o l . % = 11 . 9 % . In this study, through a set of experiments, the stress-strain curves of the MREs specimen under different concentrations was elucidated, and their effects on the volume compression modulus and Poisson ratio were discussed.
机译:为了设计基于磁流变的弹性体(MRE)的金属成形工艺,需要对三轴压缩下MRES的机械性能进行综合研究。专为基于压缩模式而设计的实验设置,用于在压缩模式下表征各向同性MRES样本。结果表明,在实验期间,模具中的Smpimene在模具中先后经历了自由压缩阶段,过渡阶段和三轴压缩阶段。当磁性颗粒的浓度从0增加到44.7%时,MRES样本的应力 - 应变曲线改变,并且降低了到达过渡阶段所需的菌株。磁通密度对MRES样本的应力 - 应变曲线的影响依赖于磁性颗粒的浓度。在不同应变率下获得的测量数据显微显示出在体积压缩模量和泊松比下的最大变化为15.7%和0.096%,其在磁通量密度为200mt的磁通密度和v o l的CIP浓度下发生。 %= 11。 9%。在该研究中,通过一组实验,阐明了不同浓度下的MRES样本的应力 - 应变曲线,并讨论了它们对体积压制模量和泊松比的影响。

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    Shi-changxu Innovation Center for Advanced Materials Institute of Metal Research Chinese Academy of Sciences|School of Materials Science and Engineering University of Science and Technology of China;

    Shi-changxu Innovation Center for Advanced Materials Institute of Metal Research Chinese Academy of Sciences|School of Materials Science and Engineering University of Science and Technology of China;

    Shi-changxu Innovation Center for Advanced Materials Institute of Metal Research Chinese Academy of Sciences|School of Materials Science and Engineering University of Science and Technology of China;

    Shi-changxu Innovation Center for Advanced Materials Institute of Metal Research Chinese Academy of Sciences|School of Materials Science and Engineering University of Science and Technology of China;

    College of Mechanical and Electrical Engineering Nanjing University of Aeronautics and Astronautics;

    College of Material Science and Technology Nanjing University of Aeronautics and Astronautics|Jiangsu Key Laboratory of Nuclear Energy Equipment Materials Engineering Nanjing University of Aeronautics and Astronautics;

    College of Material Science and Technology Nanjing University of Aeronautics and Astronautics|Jiangsu Key Laboratory of Nuclear Energy Equipment Materials Engineering Nanjing University of Aeronautics and Astronautics;

    College of Material Science and Technology Nanjing University of Aeronautics and Astronautics|Jiangsu Key Laboratory of Nuclear Energy Equipment Materials Engineering Nanjing University of Aeronautics and Astronautics;

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  • 正文语种 eng
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  • 关键词

    Magnetorheological elastomers; triaxial compression; mechanical properties; magnetic particle concentration; magnetic flux density;

    机译:磁流变弹性体;三轴压缩;机械性能;磁性颗粒浓度;磁通密度;

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