非接地负刚度动力吸振器动力学设计及优化

Dynamic design and optimization of dynamic vibration absorber with ungrounded negative stiffness

  • 摘要: 接地负刚度动力吸振器有着良好的振动控制效果,但是在实际工程应用中,负刚度元件往往无法与地面直接 相连。提出一种非接地负刚度动力吸振器,根据所建理论模型,得到系统的频响函数,利用最大值最小化理论获得 非接地负刚度动力吸振器的最优设计参数,并与其他典型的动力吸振器模型进行对比。计算结果表明,由于引入负 刚度元件,非接地负刚度动力吸振器的振动控制效果显著优于传统线性动力吸振器,为负刚度动力吸振器的工程应 用提供了一定理论参考。

     

    Abstract: The dynamic vibration absorber with grounded negative stiffness has good vibration control effect, but in practical engineering, the negative stiffness components are unable to be directly connected to the ground for a variety of applications. Therefore, a type of the dynamic vibration absorber with ungrounded negative stiffness is proposed in this paper. According to the established theoretical model, the frequency response function of the system is obtained, and the maximum value minimization theory is used to get the optimal design parameters of the dynamic vibration absorber with ungrounded negative stiffness, which is compared with other existing dynamic vibration absorber models. The calculation results show that due to the introduction of negative stiffness components, the vibration control effect of the dynamic vibration absorber with ungrounded negative stiffness is significantly better than that of traditional linear dynamic vibration absorber. The related research provides a theoretical reference for the engineering application of dynamic vibration absorber with negative stiffness.

     

/

返回文章
返回