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Modeling and characterization of a magneto-rheological fluid based damper and analysis of vibration isolation with the damper operating in passive mode

机译:基于磁流变流体的减振器的建模,表征以及减振器在被动模式下的隔振分析

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A physical model of a type of commercially available magneto-rheological fluid based damper has been developed to study the input-output response characteristics. The impedance of the nonlinear device has been analyzed based on equivalent linearization method. The capability of isolating vibration with the help of such a damper has also been studied analytically. The damper is operated in passive mode while the excitation is kept harmonic. A novel method of obtaining the steady-state response of a damped oscillator is presented that uses a combination of harmonic balance method and the method of averaging. The isolating property of the damper has been measured by transmissibilities derived for equivalent linear system. (C) 2015 Elsevier Ltd. All rights reserved.
机译:已经开发出一种类型的可商购的基于磁流变流体的阻尼器的物理模型,以研究输入输出响应特性。基于等效线性化方法分析了非线性器件的阻抗。还已经分析地研究了借助于这种阻尼器隔离振动的能力。阻尼器在被动模式下运行,同时励磁保持谐波。提出了一种新颖的获得阻尼振荡器稳态响应的方法,该方法结合了谐波平衡方法和求平均值方法。阻尼器的隔离性能已通过等效线性系统的透射率进行了测量。 (C)2015 Elsevier Ltd.保留所有权利。

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