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一种六自由度准零刚度隔振平台
引用本文:肖庆雨,周加喜,徐道临,王凯.一种六自由度准零刚度隔振平台[J].振动与冲击,2019(1):258-264.
作者姓名:肖庆雨  周加喜  徐道临  王凯
作者单位:湖南大学机械与运载工程学院;汽车车身先进设计制造国家重点实验室
基金项目:国家自然科学基金(11572116);湖南省自然科学基金(2016JJ3036);中央高校基本科研业务费
摘    要:针对多向低频隔振难题,提出了一种六自由度准零刚度隔振平台。设计了一种含凸轮-滚珠-簧片梁负刚度机构的压杆,通过静力学分析和参数设计实现了准零刚度特性。基于准零刚度压杆构造了六自由度隔振平台,并分析了其静力学特性,结果表明,隔振平台在六个自由度上均具有准零刚度特性。建立了隔振平台的动力学模型,分析了各方向上的力传递率,评估了平台的隔振性能,并讨论了压杆倾角对隔振性能的影响。结果表明,准零刚度平台在各方向上的隔振性能明显优于相应的线性隔振平台,实现了六自由度低频隔振。

关 键 词:负刚度机构  准零刚度压杆  六自由度隔振平台  低频隔振

A 6-DOF quasi-zero stiffness vibration isolation platform
XIAO Qingyu,ZHOU Jiaxi,XU Daolin,WANG Kai.A 6-DOF quasi-zero stiffness vibration isolation platform[J].Journal of Vibration and Shock,2019(1):258-264.
Authors:XIAO Qingyu  ZHOU Jiaxi  XU Daolin  WANG Kai
Affiliation:(College of Mechanical and Vehicle Engineering,Hunan University,Changsha 410082,China;State Key Lab of Advanced Design and Manufacturing for Vehicle Body,Changsha 410082,China)
Abstract:Aiming at the difficult problem of multi-direction low-frequency vibration isolation,a 6-DOF quasi-zero stiffness(QZS)vibration isolation platform was proposed.Firstly,a strut with a cam-roller-flexible beam mechanism was designed,and its QZS characteristics were realized with static analysis and parametric design.Then,a 6-DOF vibration isolation platform was constructed using the QZS struts.Its static analysis showed that this platform possesses QZS characteristics in all six DOFs.Finally,the dynamic model of this platform was established,and the force transmissibility in each direction was calculated to evaluate the platform’s vibration isolation performances.The effects of inclination angle of QZS strut on the platform’s vibration isolation performances were studied.Results indicated that the vibration isolation performances in all 6 directions of the proposed platform are superior to those of the corresponding linear vibration isolation platform to realize 6-DOF low-frequency vibration isolation.
Keywords:negative stiffness mechanism  quasi-zero stiffness strut  6-DOF vibration isolation platform  low-frequency vibration isolation
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