首页> 外文会议>International Mechanical Engineering Congress and Exposition 2007 >A TUNABLE VIBRATION ISOLATOR USING A MAGNETORHEOLOGICAL ELASTOMER WITH A FIELD INDUCED MODULUS BIAS
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A TUNABLE VIBRATION ISOLATOR USING A MAGNETORHEOLOGICAL ELASTOMER WITH A FIELD INDUCED MODULUS BIAS

机译:磁流变弹性体与场致模态偏置的可调谐振动隔离器

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Magnetorheological Elastomers (MRE) are composed of a ferromagnetic filler, micron sized iron particles, in an elastomer matrix. When a magnetic field is applied to an MRE, the iron particles develop a dipole interaction energy, which results in the material displaying a field dependent modulus. MRE materials have received attention in the last decade due in part to their potential application in semi-active vibration isolators. However, compared to MR fluid dampers, few applications of MRE materials have been developed, and no commercial devices are available. This paper describes the development of an MRE based isolator. Unique to this design is the introduction of a field induced modulus bias via a permanent magnet, which can be offset with a current input to the electromagnetic control coil. If the field bias is not significant enough to saturate the iron particles then an appropriately directed input current can also further increase the field induced modulus. Such a Biased Magnetorheological Elastomer (B-MRE) could be useful for applications where the designer wishes to decrease the system stiffness, something that has not been addressed by other MRE based devices.
机译:磁流变弹性体(MRE)由铁磁性填料,微米尺寸的铁颗粒组成,位于弹性体基质中。当磁场施加到MRE时,铁颗粒会产生偶极相互作用能,从而导致材料显示出与场有关的模量。在过去的十年中,MRE材料受到了关注,部分原因是它们在半主动隔振器中的潜在应用。但是,与MR流体阻尼器相比,MRE材料的应用很少,并且没有商用设备。本文介绍了基于MRE的隔离器的开发。这种设计的独特之处在于通过永久磁铁引入了磁场感应的模量偏置,该偏置可以通过输入电磁控制线圈的电流来补偿。如果磁场偏置的强度不足以使铁颗粒饱和,则适当定向的输入电流也可以进一步提高磁场感应模量。这种偏置磁流变弹性体(B-MRE)对于设计人员希望降低系统刚度的应用很有用,而其他基于MRE的设备则无法解决这些问题。

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