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Active vibration isolation platform on base of magnetorheological elastomers

机译:基于磁流变弹性体的主动隔振平台

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The article describes the active vibration isolation platform on base of magnetorheological (MR) elastomers. An active damper based on the MR elastomers can be used as an actuator of micro- or nanopositioning for a vibroinsulated object. The MR elastomers give such advantages for active control of vibration as large range of displacements (up to 1 mm), more efficient absorption of the vibration energy, possibility of active control of amplitude-frequency characteristics and positioning with millisecond response speed and nanometer running accuracy. The article presents the results of experimental studies of the most important active damper parameters. Those are starting current, transient time for stepping, transmission coefficient of the vibration displacement amplitude.
机译:本文介绍了基于磁流变(MR)弹性体的主动隔振平台。基于MR弹性体的主动阻尼器可用作振动绝缘物体的微定位或纳米定位的执行器。 MR弹性体具有主动控制振动的优点,例如大范围的位移(最大1毫米),更有效地吸收振动能量,主动控制振幅频率特性以及以毫秒级的响应速度和纳米运行精度进行定位的可能性。本文介绍了最重要的主动阻尼器参数的实验研究结果。这些是启动电流,步进的过渡时间,振动位移幅度的传递系数。

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