Journal Article10.1007/S11071-020-05806-0
A nonlinear ultra-low-frequency vibration isolator with dual quasi-zero-stiffness mechanism
118
TL;DR: In this article, a dual quasi-zero-stiffness (DQZS) mechanism is proposed for low-frequency vibration isolator, which combines two subordinate QZS mechanisms with a vertical linear spring in parallel.
read more
Abstract: A quasi-zero-stiffness (QZS) vibration isolator is an ideal device for low-frequency vibration isolation. However, its stiffness increases steeply against the displacement, which renders a QZS isolator to be less effective in an ultra-low-frequency range. Aiming at solving this issue, a new nonlinear ultra-low-frequency vibration isolator with a dual quasi-zero-stiffness (DQZS) mechanism is put forward by combining two subordinate QZS mechanisms with a vertical linear spring in parallel. The subordinate mechanism itself has a QZS feature, which provides negative stiffness along the vertical direction through an oblique link rod. The parameter design of the isolator is carried out to fulfil quasi-zero stiffness, which shows that the stiffness–displacement curve is much lower and more flat than the traditional QZS (TQZS) isolator in a wide displacement range. The dynamic behaviours of the DQZS vibration isolation system (VIS) are determined by employing the harmonic balance method, and the vibration isolation performance is evaluated by using theoretical, numerical and experimental transmissibility. It shows that both the beginning frequency of the vibration isolation and the peak transmissibility of the DQZS VIS are lower than the TQZS isolator, which indicates better vibration isolation performance of this ultra-low-stiffness DQZS VIS.
read more
Chat with Paper
AI Agents for this Paper
Find similar papers on Google Scholar, PubMed and Arxiv
Write a critical review of this paper
Analyze citations of this paper to find unaddressed research gaps
Citations
Bifurcation structures and bursting dynamics in a two degrees of freedom quasi-zero stiffness system with elastic constrain
Cheng You Xing,Zhengdi Zhang,Miao Peng +2 more
- 01 Aug 2022
TL;DR: In this article , a nonsmooth quasi-zero stiffness vibration isolation system is used to analyze the stability and bifurcations of equilibria belonging to two sub-systems in phase space.
6
Dynamic Analysis of Quasi-Zero Stiffness Pneumatic Vibration Isolator
N.Y.P. Vo,Thanh Danh Le +1 more
TL;DR: In this article , the dynamic response of an innovated quasi-zero stiffness pneumatic vibration isolator (QZSPVI) using two mechanisms, including wedge and semicircle cam, was analyzed.
Research on flexible beam-type nonlinear vibration isolators suitable for low frequencies
Guangdong Sui,Chunyu Zhou,Yifeng Chen,Xiaofan Zhang,C. Hou,Xiaobiao Shan,Jian Cao +6 more
TL;DR: This study introduces a quasi-zero stiffness vibration isolator for low-frequency ship vibration, proposing a discretized beam constraint model and harmonic balance method to analyze static and dynamic properties, demonstrating significant advantages in isolation bandwidth and peak transmissibility.
6
Analysis on nonlinear stiffness isolators revealing damping thresholds
Mu Niu,Li-Qun Chen +1 more
TL;DR: This study proposes an analytical method to predict frequency responses of nonlinear stiffness isolators under different damping, revealing damping thresholds and unique behaviors such as full-band isolation, bounded response, and unbounded response.
5
References
Recent advances in nonlinear passive vibration isolators
TL;DR: In this paper, a comprehensive assessment of recent developments of nonlinear isolators in the absence of active control means is presented, which highlights resolved and unresolved problems and recommendations for future research directions.
1K
A study of a nonlinear vibration isolator with a quasi-zero stiffness characteristic
TL;DR: In this paper, a vibration isolator consisting of a vertical linear spring and two nonlinear pre-stressed oblique springs is considered, and the softening parameter leading to quasi-zero dynamic stiffness at the equilibrium position is obtained as a function of the initial geometry, pre-stress and the stiffness of the springs.
467
On the force transmissibility of a vibration isolator with quasi-zero stiffness
TL;DR: In this article, the authors derived the force transmissibility of a quasi-zero-stiffness isolator, which consists of a vertical spring and two oblique springs that are either linear, linear with pre-stress or softening nonlinear with prestress.
451
Nonlinear dynamic characteristics of a quasi-zero stiffness vibration isolator with cam–roller–spring mechanisms
TL;DR: In this paper, a piecewise nonlinear dynamic model is formulated in the consideration of possible disengagement between the cam and roller, and the analytical solution of the amplitude-frequency relationship is derived by using the averaging method and further verified by numerical simulations.
409