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Research on the influence of spring stiffness in an ER isolator

机译:ER隔振器中弹簧刚度影响的研究

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摘要

In this paper, the problem of Electrorheological(ER) technology's application in the vibration isolation system is empirically studied. Based on the particular characteristics of the Electrorheological Fluids (ERF) tunable damping, a metal-spring ER isolator was designed and its working principle is mainly discussed. By theoretical analysis of its simplified physical model, the dynamic response of an ER isolator is frequency- and amplitude- dependent and sensitive to structural parameters. The controllable parameters here can be the system equivalent spring stiffness K and damping coefficient C of ERF. With experiment, the exertion of ER effect was controlled through the change of K and C. Consequently, the system dynamic stiffness, which is used to describe the dynamic properties of system isolation performance, can be changed obviously.According to the dynamic performance tests, the result confirmed that applying different electric field strength could change the dynamic peculiarity of the metal-spring ER isolator. The configuration design of the ER equipment, such as stiffness ratio of two fluid chambers and the size of the electric field, which are important factors for the tunable range of ER isolator.
机译:本文以电流变(ER)技术在隔振系统中的应用问题为研究对象。根据电流变流体(ERF)可调阻尼的特点,设计了金属弹簧ER隔振器,并对其工作原理进行了讨论。通过对其简化的物理模型的理论分析,ER隔振器的动态响应与频率和幅度有关,并且对结构参数敏感。这里的可控参数可以是系统等效弹簧刚度K和ERF的阻尼系数C。通过实验,通过改变K和C来控制ER效应的发挥。因此,用来描述系统隔离性能的动态特性的系统动态刚度可以明显改变。根据动态性能测试,结果证实,施加不同的电场强度可以改变金属弹簧ER隔振器的动态特性。 ER设备的配置设计,例如两个流体腔的刚度比和电场的大小,是ER隔离器可调范围的重要因素。

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