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A new magnetorheological fluid-elastomer vibration isolator

机译:新型磁流变弹性体隔振器

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In this work the performance of a new design concept utilizing a magnetorheological (MR) fluid-elastomer (MRF-E) is examined. A prototype MRF-E vibration isolator is built and its dynamic behavior is investigated under harmonic motions for a range of frequencies between 0.1 Hz to l0.0Hz, under various applied magnetic fields. The experimental results exhibit the effects on the stiffness and the damping capability of the MRF-E vibration isolator is a function of the displacement and magnetic field strength; and weakly dependent on the frequency of motion. It is demonstrates that the new vibration isolator, whose mechanical properties can be controlled by an applied magnetic field, has potential in applications where tuning vibration characteristics are desired.
机译:在这项工作中,研究了利用磁流变(MR)流体弹性体(MRF-E)的新设计概念的性能。构建了原型MRF-E隔振器,并研究了其在谐波运动下在各种施加磁场下在0.1 Hz至10.0 Hz之间的频率范围内的动态行为。实验结果表明,对MRF-E隔振器的刚度和阻尼能力的影响是位移和磁场强度的函数。并且几乎不依赖运动频率。事实证明,这种新型的振动隔离器的机械性能可以通过施加的磁场来控制,在需要调整振动特性的应用中具有潜力。

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