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Investigation of Damping Coefficient For Magnetorheological Elastomer

机译:磁流变弹性体的阻尼系数研究

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Magnetorheological elastomer (MRE) is a smart material where its stiffness vary with presence of magnetic field.These special properties lead to various application as mechanical devise such as damper. Damping coefficient is criteria that need to consider while designing the device. This paper aims to study the effect of iron filling and elastomer composition on a damping coefficient of MRE. Five MRE specimens with different CIP composition from 30 to 70% was prepared.the speciment was tested with testbed which is has a Constance distance permanent magnet(5mm) and motor speed (131.9Hz). the vibration amplitude in frequency domain was used to calculate the damping coefficient by half-power bandwidth equation. Experimental result indicates that the highest damping coefficient is at 30% CIP concentration and the lowest is at 70% CIP composition. As a conclusion, the damping coeficiet is decrease with increasing in CIP composition.this finding useful to design an optimal active damper for mechanical component.
机译:磁流变弹性体(MRE)是一种智能材料,其刚度会随着磁场的存在而变化,这些特殊的性能导致诸如阻尼器之类的机械装置的各种应用。阻尼系数是设计器件时需要考虑的标准。本文旨在研究铁填充和弹性体组成对MRE阻尼系数的影响。制备了5种CIP组成从30%到70%的MRE标本。用具有Constance距离永磁体(5mm)和电机速度(131.9Hz)的试验台对样品进行测试。利用频域振动幅度通过半功率带宽方程计算阻尼系数。实验结果表明,最高的阻尼系数是在CIP浓度为30%时,最低的是在CIP成分为70%时。结论是,阻尼系数随着CIP成分的增加而减小。这一发现对于设计机械部件的最佳主动阻尼器很有用。

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