首页> 外文期刊>Archive of Applied Mechanics >Dynamic characteristics of a quasi-zero stiffness vibration isolator with nonlinear stiffness and damping
【24h】

Dynamic characteristics of a quasi-zero stiffness vibration isolator with nonlinear stiffness and damping

机译:具有非线性刚度和阻尼的准零刚度隔振器的动力学特性

获取原文
获取原文并翻译 | 示例

摘要

A quasi-zero stiffness (QZS) isolator is devised to acquire the feature of high-static-low-dynamic stiffness. Cam-roller-nonlinear spring mechanisms, where two horizontal dampers are installed symmetrically, are employed as a negative stiffness provider to connect in parallel with a vertical spring. From the static analysis, the piecewise restoring force in the vertical direction of the system is inferred considering possible separation between the cam and roller. The stiffness characteristics and parameters for offering zero stiffness at the equilibrium position are then determined. The dynamic equation is established and used for the deduction of the amplitude-frequency equation by means of the Harmonic Balance Method. The definitions of force and displacement transmissibility are introduced, and their expressions are derived for subsequent investigations of the effects of horizontal spring's nonlinearity, excitation amplitude, horizontal damping, and vertical damping on the transmissibility performance. The comparative study is implemented on the isolation performance afforded by the QZS isolator and an equivalent linear counterpart, whose static bearing stiffness is same as the QZS isolator. Results indicate that the system with softening nonlinear horizontal spring can exhibit better performance than that with opposite stiffness spring. With the increase in horizontal damping ratio, the force transmissibility is further suppressed in resonance frequency range but increased in a small segment of higher frequencies and tends to unite in high frequency range. However, the horizontal damper deteriorates the ability to isolate the displacement excitation to a certain extent. Besides, the isolation capability of the QZS system depends on the magnitude of excitation amplitude. The quasi-zero stiffness system possesses lower initial isolation frequency and better isolation ability around resonance frequency compared with the linear system. Therefore, the quasi-zero stiffness isolator has superior low-frequency ability in isolating vibration over its linear counterpart.
机译:设计了准零刚度(QZS)隔离器,以获取高静态-低动态刚度的特征。凸轮滚子非线性弹簧机构(对称地安装了两个水平阻尼器)用作负刚度提供器,与垂直弹簧并联。从静态分析中,考虑到凸轮和滚轮之间可能存在的分离,可以推断出系统垂直方向上的分段恢复力。然后确定在平衡位置提供零刚度的刚度特性和参数。建立动态方程,并通过谐波平衡法将其用于推导幅频方程。介绍了力和位移传递系数的定义,并推导了它们的表达式,以便随后研究水平弹簧的非线性,激励幅度,水平阻尼和垂直阻尼对传递性能的影响。对比研究是基于QZS隔离器和等效线性对应物(其静态轴承刚度与QZS隔离器相同)提供的隔离性能而进行的。结果表明,与水平刚度相反的弹簧相比,带有非线性水平弹簧的系统可以表现出更好的性能。随着水平阻尼比的增加,力传递率在共振频率范围内被进一步抑制,但是在较高频率的一小段中增加,并且倾向于在高频范围内结合。然而,水平阻尼器在一定程度上降低了隔离位移激励的能力。此外,QZS系统的隔离能力还取决于激励幅度的大小。与线性系统相比,准零刚度系统具有较低的初始隔离频率和更好的共振频率隔离能力。因此,准零刚度隔离器在隔离振动方面具有优于其线性对应物的低频能力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号