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首页> 外文期刊>Smart Materials & Structures >A novel method for dynamic characterization of angular displacement-dependent viscoelastic properties of magnetorheological elastomer under torsional loading conditions
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A novel method for dynamic characterization of angular displacement-dependent viscoelastic properties of magnetorheological elastomer under torsional loading conditions

机译:扭转载荷条件下磁流变弹性体角位移依赖性粘弹性性能的动态表征新方法

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摘要

The dynamic properties of magnetorheological elastomers are predominantly affected by variation in the input displacements. The displacement-dependent characteristics have been extensively studied under lateral shear, but the property variations under torsional shear have not been explored. The present study focuses on developing a novel method to study the influence of angular displacement on the dynamic properties of magnetorheological elastomers under torsional loading conditions. The experimental setup is developed according to the ISO 10846-2 standard to evaluate the variations in the dynamic torsional stiffness and loss factor. Experiments are conducted for input angular displacements ranging from 0.002 to 0.016 rad for an input frequency between 10 and 30 Hz. Results highlight the effectiveness of the developed method in capturing the rheological properties under torsion. Variations in the dynamic torsional stiffness suggest the dominant behaviour of the input angular displacement. The bound rubber theory is used to interpret the angular displacement dependent variations on the torsional stiffness. Further, the effect of input frequency and magnetic field on the dynamic torsional stiffness is also examined. It is also observed that the damping capacity of the MRE is dependent on the angular displacement and the dissipation capacity of the elastomer is evaluated in terms of loss factor. Results indicate a significant contribution of the interfacial damping over the intrinsic and magneto-mechanical hysteresis damping.
机译:磁流变弹性体的动态性质主要受输入位移的变化影响。在横向剪切下已经广泛研究了位移依赖性特征,但概述了扭转剪切下的性能变化。本研究致力于开发一种研究角位移对扭转负载条件下磁流变弹性体动态性能影响的新方法。实验设置根据ISO 10846-2标准开发,以评估动态扭转刚度和损耗因子的变化。对输入频率为10至30Hz的输入频率的输入角位移进行实验。结果突出了开发方法在捕获流变性能下的有效性。动态扭转刚度的变化表明了输入角位移的主导行为。结合的橡胶理论用于解释扭转刚度的角位移依赖性变化。此外,还检查了输入频率和磁场对动态扭转刚度的影响。还观察到,MRE的阻尼能力取决于角度位移,并且在损耗因子方面评估弹性体的耗散能力。结果表明界面阻尼在内在和磁力机械滞后阻尼的显着贡献。

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