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菱形HSLDS隔振器负刚度机构质量及摩擦力影响分析
引用本文:袁屹杰,纪明,张卫国,伊兴国,王毅,施道云.菱形HSLDS隔振器负刚度机构质量及摩擦力影响分析[J].应用光学,2021,42(2):207-214.
作者姓名:袁屹杰  纪明  张卫国  伊兴国  王毅  施道云
作者单位:西安应用光学研究所,陕西 西安 710065
基金项目:装备预研兵器工业联合基金项目(6141B010118)
摘    要:以菱形负刚度机构HSLDS(high static low dynamic stiffness)隔振器(简称菱形HSLDS隔振器)为研究目标,采用虚功法建立负刚度机构等效摩擦力模型,并以拉格朗日方法建立包含负刚度机构质量及摩擦力因素的动力学方程;利用谐波平衡法(HBM)求解动力学方程,分析了负刚度机构质量及摩擦力对隔振...

关 键 词:HSLDS隔振器  菱形负刚度机构  负刚度机构质量  负刚度机构摩擦力
收稿时间:2020-10-13

Analysis of mass and friction effect of negative stiffness mechanism of rhombic HSLDS vibration isolator
Institution:Xi’an Institute of Applied Optics, Xi’an 710065, China
Abstract:Taking high static low dynamic stiffness (HSLDS) vibration isolator with rhombic negative stiffness mechanism (rhombic HSLDS isolator) as research object, the equivalent friction model of negative stiffness mechanism was established by virtual work method, and the kinetic equation with factors of negative stiffness mechanism mass and friction was established by Lagrange method. The kinetic equation was solved by harmonic balance method (HBM), the influences of negative stiffness mechanism mass and friction on vibration isolation and optimization measures were analyzed, and the rationality of theoretical model was verified by the prototype. The experimental results show that the mass and friction of negative stiffness mechanism have adverse effect on vibration isolation and should be reduced. Connecting the shorter rod side of negative stiffness mechanism to the end of load platform can reduce influence of the negative stiffness mechanism mass on vibration isolation performance in higher-frequency range. Under condition that stiffness parameters of isolator and contact parameters of hinged pairs are fixed, and the stiffness and friction are satisfied simultaneously, the vibration isolation performance in low-frequency range can be optimized by increasing the rod length difference, and can reduce the influence of negative stiffness mechanism friction on vibration isolation in high-frequency range.
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