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Experimental study of a hybrid platform for high-tech equipment protection against earthquake and microvibration

机译:高科技设备抗地震和微振动的混合平台的实验研究

摘要

This paper presents an experimental study to explore the possibility of using a hybrid platform to ensure the functionality of high-tech equipment against microvibration and to protect high-tech equipment from damage when an earthquake occurs. A three-storey building model and a hybrid platform model were designed and manufactured. The two-layer hybrid platform, on which the high-tech equipment is placed, was installed on the first floor of the building to work as a passive platform aiming at abating acceleration response of the equipment during an earthquake and functioning as an actively controlled platform that intends to reduce velocity response of the equipment under a normal working condition. For the hybrid platform working as a passive platform, it was designed in such a way that its stiffness and damping ratio could be changed, whereas for the hybrid platform functioning as an active platform, a piezoelectric actuator with a sub-optimal velocity feedback control algorithm was used. A series of shaking table tests, traffic-induced vibration tests and impact tests were performed on the building with and without the platform to examine the performance of the hybrid platform. The experimental results demonstrate that the hybrid platform is feasible and effective for high-tech equipment protection against earthquake and microvibration.
机译:本文提出了一项实验研究,以探索使用混合平台来确保高科技设备的抗微振动功能以及在地震发生时保护高科技设备免受损坏的可能性。设计制造了三层建筑模型和混合平台模型。放置高科技设备的两层混合平台安装在建筑物的一楼,用作被动平台,旨在减轻设备在地震中的加速度响应并充当主动控制平台旨在降低设备在正常工作条件下的速度响应。对于用作被动平台的混合平台,其设计可以改变其刚度和阻尼比,而对于用作主动平台的混合平台,则具有次优速度反馈控制算法的压电致动器被使用了。在有或没有平台的情况下,对建筑物进行了一系列的振动台测试,交通诱发的振动测试和冲击测试,以检查混合平台的性能。实验结果表明,该混合平台对高科技设备的抗震和微振动防护是可行和有效的。

著录项

  • 作者

    Xu YL; Yu ZF; Zhan S;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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