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Nonlinear Low Frequency Response Research for a Vibration Isolator with Quasi-Zero Stiffness Characteristic

机译:用于准零刚度特性的振动隔离器的非线性低频响应研究

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摘要

A vibration isolator system with nonlinear stiffness is designed and tested to solve problems on marine noise measuring equipment which are caused by underwater flow. The low frequency response characteristics of the vibration isolation system are evaluated from static function and dynamic simulation with Harmonic Balance Method. The theoretical analysis results show that the total stiffness value of the isolator system will be kept in 0 point around when parallel springs stay in equilibrium position. In order to assess the practical efficiency of Quasi-Zero-Stiffness (QZS) isolator, a vibration response test is carried out. By comparing the acceleration signals at 5 Hz and 100 Hz between linear and nonlinear system in time domain and frequency domain, the transmissibility curves are obtained. The experimental results demonstrate that the isolation system expands the frequency range of operation effectively by decreasing the natural frequency of the QZS vibration isolator. In addition, the QZS isolation system decreases the transmissibility of vibration by reducing the amplitude of output signals. The QZS isolator has more outstanding performance in contrast to linear spring in ultralow frequency isolation field.
机译:设计并测试了具有非线性刚度的隔振器系统,以解决由水下流动引起的海洋噪声测量设备的问题。振动隔离系统的低频响应特性从谐波平衡法的静态功能和动态仿真评估。理论分析结果表明,当平行弹簧保持在平衡位置时,隔离器系统的总刚度值将保持在0点。为了评估准零刚度(QZS)隔离器的实际效率,进行振动响应试验。通过在时间域和频域中的线性和非线性系统之间以5Hz和100Hz的加速信号进行比较,获得传输曲线。实验结果表明,通过降低QZS隔振器的固有频率,隔离系统通过降低QZS振动隔离器的固有频率而有效地扩展了频率范围。另外,QZS隔离系统通过降低输出信号的幅度来降低振动的传递率。 QZS隔离器与超级频率隔离场中的线性弹簧形成更出色的性能。

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