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Experimental Study of Vibration Isolation Characteristics of a Geometric Anti-Spring Isolator

机译:几何抗弹簧隔离器隔振特性的实验研究

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In order to realize low-frequency vibration isolation, a novel geometric anti-spring isolator consisting of several cantilever blade springs are developed in this paper. The optimal design parameters of the geometric anti-spring isolator for different nonlinear geometric parameters are theoretically obtained. The transmissibility characteristic of the geometric anti-spring isolator is investigated through mathematical simulation. A geometric anti-spring isolator with a nonlinear geometric parameter of 0.92 is designed and its vibration isolation performance and nonlinearity characteristic is experimentally studied. The experiment results show that the designed isolator has good low-frequency vibration isolation performance, of which the initial isolation frequency is less than 3.6 Hz when the load weight is 21 kg. The jump phenomena of the response of the isolator under linear frequency sweep excitation are observed, and this result demonstrates that the geometric anti-spring isolator has a complex nonlinearity characteristics with the increment of excitation amplitude. This research work provides a theoretical and experimental basis for the application of the nonlinear geometric anti-spring low-frequency passive vibration isolation technology in engineering practice.
机译:为了实现低频隔振,本文开发了一种新型的由多个悬臂叶片弹簧组成的几何抗弹簧隔离器。理论上获得了针对不同非线性几何参数的几何抗弹簧隔离器的最佳设计参数。通过数学仿真研究了几何抗弹簧隔离器的传递特性。设计了非线性几何参数为0.92的几何抗弹簧隔离器,并对其隔振性能和非线性特性进行了实验研究。实验结果表明,所设计的隔振器具有良好的低频隔振性能,当载荷为21 kg时,其初始隔振频率小于3.6 Hz。观察到隔振器在线性扫频激励下的响应跳变现象,该结果表明几何抗弹簧隔振器随着激励幅度的增加具有复杂的非线性特性。该研究工作为非线性几何抗弹簧低频被动隔振技术在工程实践中的应用提供了理论和实验依据。

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