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局域共振型隔振系统的低频振动特性分析
引用本文:高晟耀,郭彭,周奇郑. 局域共振型隔振系统的低频振动特性分析[J]. 中国机械工程, 2022, 33(3): 310-317,347. DOI: 10.3969/j.issn.1004-132X.2022.03.007
作者姓名:高晟耀  郭彭  周奇郑
作者单位:1.中国人民解放军92578部队,北京,1001612.海军工程大学兵器工程学院,武汉,430033
摘    要:为有效降低基体低频振动对精密仪器测量精度的影响,提出了周期布置吸振器的减振方式.建立了基体-隔振设备-吸振器系统的动力学模型,利用模态叠加法导出了系统耦合振动方程的解析解,并用有限元法进行了验证.获得了吸振器数量、参数对系统低频振动特性的影响规律,在吸振器总数一定的情况下,将其划分为包含不同数量振子的周期元胞.以低频段...

关 键 词:局域共振  隔振  低频振动  解析法  粒子群优化

Analysis of Low Frequency Vibration Characteristics of Locally-resonant Vibration Isolation Systems
GAO Shengyao,GUO Peng,ZHOU Qizheng. Analysis of Low Frequency Vibration Characteristics of Locally-resonant Vibration Isolation Systems[J]. China Mechanical Engineering, 2022, 33(3): 310-317,347. DOI: 10.3969/j.issn.1004-132X.2022.03.007
Authors:GAO Shengyao  GUO Peng  ZHOU Qizheng
Affiliation:1.No.92578 Unit of the PLA,Beijing,1001612.School of Ordnance Engineering,Naval University of Engineering,Wuhan,430033
Abstract:To effectively reduce the impact of low-frequency vibration of the base on measurement accuracy of precision instruments, a vibration attenuation method of periodically arranged absorbers was proposed. The dynamics model of substrate-vibration isolation equipment-vibration absorber system was established, the analytical solution of coupled vibration equation of the systems was derived by modal superposition method and verified by finite element method. The influence laws of number and parameters of vibration absorbers on low frequency vibration performance of the systems were obtained, when the total number of vibration absorbers was fixed, which was divided into several periodic cells with different number of resonators. Taking 0.7 times of the maximum amplitude and 0.3 times of the average amplitude as objective function, the parameters of resonator in cell were optimized by PSO algorithm. Results show that within the target frequency range, the relative errors between the analytical solution and the finite element one are as 4.39% and 2.98% respectively. Within the target frequency range, for the single-resonator cell, the vibration attenuation performance with 5 resonators is the best and the vibration attenuation efficiency is as 11.34%. When the mass ratio, natural frequency ratio and damping ratio of the absorber are around 0.16, 0.8 and 0.18 respectively, the vibration attenuation performance is the best, and the damping efficiencies are as 10.46%, 8.69% and 12.20% respectively. The vibration attenuation efficiency of optimized single-resonator, double-resonator, and triple-resonator cells may achieve 12.45%, 18% and 18.3% respectively. 
Keywords:locally-resonant   vibration isolation   low frequency vibration   analytical method   particle swarm optimization(PSO)  
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