Home /Research /Research and Analysis of Quasi-Zero-Stiffness Isolator with Geometric Nonlinear Damping
OTHER

Research and Analysis of Quasi-Zero-Stiffness Isolator with Geometric Nonlinear Damping

Meng Qingguo, Xuefeng Yang, Wei Li, En Lu, Lianchao Sheng

Year
2017
Citations
34
Access
Open access

Abstract

This paper presents a novel quasi-zero-stiffness (QZS) isolator designed by combining a tension spring with a vertical linear spring. In order to improve the performance of low-frequency vibration isolation, geometric nonlinear damping is proposed and applied to a quasi-zero-stiffness (QZS) vibration isolator. Through the study of static characteristics first, the relationship between force displacement and stiffness displacement of the vibration isolation mechanism is established; it is concluded that the parameters of the mechanism have the characteristics of quasi-zero stiffness at the equilibrium position. The solutions of the QZS system are obtained based on the harmonic balance method (HBM). Then, the force transmissibility of the QZS vibration isolator is analyzed. And the results indicate that increasing the nonlinear damping can effectively suppress the transmissibility compared with the nonlinear damping system. Finally, this system is innovative for low-frequency vibration isolation of rehabilitation robots and other applications.

Keywords

IsolatorTransmissibility (structural dynamics)Vibration isolationStiffnessHarmonic balanceSpring (device)Nonlinear systemStructural engineeringDisplacement (psychology)Control theory (sociology)

Related papers

Browse all OTHER papers