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首页> 外文期刊>Journal of intelligent material systems and structures >Feasibility study on a hybrid mount system with air springs and piezo-stack actuators for microvibration control
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Feasibility study on a hybrid mount system with air springs and piezo-stack actuators for microvibration control

机译:带有空气弹簧和压电堆栈执行器的微振动控制混合安装系统的可行性研究

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摘要

This article proposes a new hybrid mount system with air springs and piezo-stack actuators that can deliver excellent performance in the microvibration control of high-tech facilities. Air springs are one of the most popular products for vibration isolation and deliver good performance in general. Piezo-stack actuators are capable of controlling micro- and nanolevel displacement with a fast response. In order to fully utilize the isolation and leveling performances of an air spring as a passive part, it is serially connected with a piezo-stack actuator serving as an active part. As a control logic for the hybrid mount, the filtered-X least-mean-square algorithm is applied. A hybrid mount system with four hybrid mounts is configured in order to confirm the performance of the hybrid mount and its performance is verified through a series of experimental tests.
机译:本文提出了一种新的混合安装系统,该系统具有空气弹簧和压电叠层执行器,可以在高科技设备的微振动控制中提供出色的性能。空气弹簧是最流行的用于隔振的产品之一,并且通常具有良好的性能。压电叠层执行器能够快速响应地控制微米和纳米级位移。为了充分利用空气弹簧作为无源部件的隔离和调平性能,它与用作有源部件的压电叠层致动器串联。作为混合安装的控制逻辑,应用了滤波X最小均方算法。配置具有四个混合底座的混合底座系统,以确认混合底座的性能,并通过一系列实验测试来验证其性能。

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