An asymmetric quasi-zero stiffness vibration isolator with long stroke and large bearing capacity

隔离器 传递率(结构动力学) 刚度 结构工程 隔振 流离失所(心理学) 振动 谐波平衡 弹簧(装置) 非线性系统 悬臂梁 工程类 控制理论(社会学) 物理 声学 计算机科学 电气工程 量子力学 人工智能 心理治疗师 控制(管理) 心理学
作者
Xinghua Zhou,Dingxuan Zhao,X. Sun,Xiao Yang,Jianhai Zhang,Tao Ni,Kehong Tang
出处
期刊:Nonlinear Dynamics [Springer Science+Business Media]
卷期号:108 (3): 1903-1930 被引量:25
标识
DOI:10.1007/s11071-022-07300-1
摘要

A novel passive asymmetric quasi-zero stiffness vibration isolator (AQZS-VI) comprising two linear springs acting in parallel with one negative stiffness element (NSE) is proposed, of which the NSE is mainly constructed by the combination of cantilever plate spring and L-shaped lever (CPS-LSL). The static model of the isolator is deduced considering the geometrical nonlinearity of the NSE and the bending deformation of plate spring. The nonlinear stiffness properties of the CPS-LSL and the AQZS-VI, as well as the nonlinear damping properties of the AQZS-VI, are discussed. The absolute displacement transmissibility of the AQZS-VI under base displacement excitation is obtained using harmonic balance method, and the effects of different excitation amplitudes and damping factors on the vibration isolation performance are analyzed. Better than other quasi-zero stiffness vibration isolators (QZS-VI) whose NSEs do not provide supporting force at zero stiffness point, the NSE of the AQZS-VI provides more supporting force than the parallel connected linear springs, which is very beneficial for improving the bearing capacity of the isolator. Compared with a typical symmetric QZS-VI with same damping property, the AQZS-VI has longer stroke with low stiffness and lower peak value of displacement transmissibility. The prototype experiments indicate that the AQZS-VI outperforms the linear counterpart with much smaller starting frequency of vibration isolation and lower displacement transmissibility. The proposed AQZS-VI has great potential for applying in various engineering practices with superior vibration isolation performance.

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