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引力波探测中的被动隔振系统
引用本文:赵鹏飞,唐孟希,黄玉盈,孙世军.引力波探测中的被动隔振系统[J].力学进展,2003,33(2):187-193.
作者姓名:赵鹏飞  唐孟希  黄玉盈  孙世军
作者单位:华中科技大学力学系
基金项目:华中科技大学博士后基金,广东省教育厅自然科学研究基金资助项目
摘    要:介绍了引力波探测实验中的被动隔振系统的基本原理和研究现状,讨论其性能及特点.低频被动隔振系统,如七级气体弹簧隔振系统,多级隔振堆,四级悬臂弹簧隔振系统以及三级弯曲弹簧隔振系统在10Hz以上,都具有好的隔振性能;倒摆、折叠摆、 X摆和锥摆等超低频水平隔振系统实现了几十秒的共振周期;建立在对称扭杆弹簧系统基础上,构思新颖的被动垂直隔振系统克服了传统被动垂直隔振系统无法解决的困难,实现了超低频被动垂直隔振. 

关 键 词:隔振系统    隔振率    共振周期    引力波探测    扭杆弹簧    地脉动噪声
修稿时间:2002年3月12日

THE PASSIVE VIBRATION ISOLATION SYSTEMS AGAINST SEISMIC NOISE IN GRAVITATIONAL WAVE DETECTION
ZHAO Pengfei TANG Mengxi HUANG Yuying SUN Shijun.THE PASSIVE VIBRATION ISOLATION SYSTEMS AGAINST SEISMIC NOISE IN GRAVITATIONAL WAVE DETECTION[J].Advances in Mechanics,2003,33(2):187-193.
Authors:ZHAO Pengfei TANG Mengxi HUANG Yuying SUN Shijun
Institution:ZHAO Pengfei TANG Mengxi HUANG Yuying SUN Shijun Department of Mechanics,Huazhong University of Science and Technology,Wuhan 430074,China Department of Physics,Zhanjiang Normal College,Zhanjiang 524048,China Department of Physics,Zhongshan University,Guangzhou 510275,China
Abstract:The passive vibration isolation systems against seismic noise for gravitational wave detectors are reviewed in this paper, including the principle of the isolators and the recent progresses in the field as well as the performances and characteristics of the isolators. Some low frequency passive isolators, such as the seven-stage gas spring super- attenuator, the isolation stacks, the four-stage cantilever spring vibration isolator and the three- stage curved cantilever spring isolator, are shown to have a good isolation performance in the range above 10 Hz. Several ultra-low frequency horizontal vibration isolators, including the inverted pendulum system, the folded pendulum, the .X-pendulum, the conical pendulum, may have a resonant period of tens of seconds. The innovative prototype of the long period vertical vibration isolators based on torsion spring, which eliminates the difficulty in a traditional mass-spring vertical vibration isolator, provides an ultra-low frequency vertical vibration isolation.
Keywords:vibration isolation system  isolation ratio  resonant period  gravitational wave detection  torsion spring  seismic noise
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