204 / 2021-03-31 21:56:37
Vibration Isolation by Exploring Geometric Nonlinearity of Rhombus Structure with Magnetic Compensation
Vibration control; Nonlinear stiffness; Nonlinear dynamics; Large amplitude vibration
摘要录用
Ge Yan / Shanghai Jiao Tong University
Wen-Hao Qi / Shanghai Jiao Tong University
Sen Wang / Shanghai Jiao Tong University
Wen-Ming Zhang / Shanghai Jiao Tong University
This paper developed a quasi zero stiffness (QZS) isolator with a rhombus structure and repulsive permanent magnets, which is systematically studied for large amplitude vibration isolation. The rhombus structure consists of four rods with same length and a linear spring. Statics analysis reveals that the rhombus structure large deformation recovery ability and negative stiffness in large stroke range. Repulsive magnets are introduced to compensate for the negative stiffness of the rhombus structure. Therefore, QZS can be realized in a wide displacement range for a better isolation performance in large amplitude vibration isolation. The theoretical model is established and the derived transmissibility shows that the proposed QZS isolator have low resonant frequency and can effectively suppress the vibration in a wide frequency band. Comparing with the conventional QZS isolator, the isolator using rhombus structure and magnets possesses weak nonlinearity and can avoid stability problem, such as frequency jumping, chaos or bifurcation. A prototype is manufactured and tested verify its advantages in suppressing low frequency and large amplitude vibration. This novel QZS isolator provided a potential approach to passive vibration control of large amplitude vibration.
重要日期
  • 会议日期

    11月01日

    2022

    11月03日

    2022

  • 10月30日 2022

    初稿截稿日期

  • 11月09日 2022

    注册截止日期

主办单位
Qingdao University of Technology
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