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A magnetorheological actuation system: test and model

机译:磁流变致动系统:测试和模型

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Self-contained actuation systems, based on frequency rectification of the high frequency motion of an active material, can produce high force and stroke output. Magnetorheological (MR) fluids are active fluids whose rheological properties can be altered by the application of a magnetic field. By using MR fluids as the energy transmission medium in such hybrid devices, a valving system with no moving parts can be implemented and used to control the motion of an output cylinder shaft. The MR fluid based valves are configured in the form of an H-bridge to produce bi-directional motion in an output cylinder by alternately applying magnetic fields in the two opposite arms of the bridge. The rheological properties of the MR fluid are modeled using both Bingham plastic and bi-viscous models. In this study, the primary actuation is performed using a compact terfenol-D rod driven pump and frequency rectification of the rod motion is done using passive reed valves. The pump and reed valve configuration along with MR fluidic valves form a compact hydraulic actuation system. Actuator design, analysis and experimental results are presented in this paper. A time domain model of the actuator is developed and validated using experimental data.
机译:基于活性物质高频运动的频率整流的独立式致动系统可以产生高力和行程输出。磁流变(MR)流体是活性流体,其流变特性可以通过施加磁场来改变。通过在这种混合动力装置中将MR流体用作能量传输介质,可以实现没有运动部件的阀门系统,并将其用于控制​​输出气缸轴的运动。基于MR流体的阀以H桥的形式配置,以通过在桥的两个相对臂中交替施加磁场来在输出气缸中产生双向运动。 MR流体的流变特性是使用Bingham塑料模型和双粘性模型进行建模的。在这项研究中,主要的致动是使用紧凑的Terfenol-D杆驱动泵进行的,而杆运动的频率校正是使用被动簧片阀完成的。泵和簧片阀配置以及MR流体阀构成了紧凑的液压致动系统。本文介绍了执行器的设计,分析和实验结果。使用实验数据开发并验证了执行器的时域模型。

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