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Modeling of a new semi-active/passive magnetorheological elastomer isolator

机译:新型半主动/被动磁流变弹性体隔离器的建模

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This paper presents theoretical modeling of a new magnetorheological elastomer (MRE) base isolator and its performance for vibration control. The elastomeric element of the traditional steel-rubber base isolator is modified to a composite layer of passive elastomer and MRE which makes the isolator controllable with respect to its stiffness and damping. The proposed variable stiffness and damping isolator (VSDI) is designed based on an optimized magnetic field passing through MRE layers to achieve maximum changes in mechanical properties. The controllability of the VSDI is investigated experimentally under double lap shear tests. A model employing the Bouc-Wen hysteresis element is proposed to characterize the force-displacement relationship of the VSDI. An integrated system which consists of four VSDIs is designed, built and tested. Dynamic testing on the integrated system is performed to investigate the effectiveness of the VSDIs for vibration control. Experimental results show significant shift in natural frequency, when VSDIs are activated and the possibility of using the VSDIs as a controllable base isolator.
机译:本文介绍了新型磁流变弹性体(MRE)基础隔离器的理论模型及其用于振动控制的性能。传统的钢基橡胶隔震器的弹性元件被修改为被动弹性体和MRE的复合层,这使得隔震器的刚度和阻尼可控。拟议的可变刚度和阻尼隔离器(VSDI)是基于经过MRE层的优化磁场来实现机械性能的最大变化而设计的。在双搭接剪切试验下,对VSDI的可控性进行了实验研究。提出了使用Bouc-Wen磁滞元件的模型来表征VSDI的力-位移关系。设计,构建和测试了由四个VSDI组成的集成系统。在集成系统上进行了动态测试,以研究VSDI在振动控制方面的有效性。实验结果表明,当激活VSDI时,固有频率发生了显着变化,并且有可能将VSDI用作可控制的基本隔离器。

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