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Force and displacement transmissibility of a quasi-zero stiffness vibration isolator with geometric nonlinear damping

机译:用几何非线性阻尼的准零刚度隔振器的力和位移传递性

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摘要

A geometric nonlinear damping is proposed and applied to a quasi-zero stiffness (QZS) vibration isolator with the purpose of improving the performance of low-frequency vibration isolation. The force, stiffness and damping characteristics of the system are presented first. The steady-state solutions of the QZS system are obtained based on the averaging method for both force and base excitations and further verified by numerical simulation. The force and displacement transmissibility of the QZS vibration isolator are then analysed. The results indicate that increasing the nonlinear damping can effectively suppress the force transmissibility in resonant region with the isolation performance in higher frequencies unaffected. In addition, the application of the nonlinear damping in the QZS vibration isolator can essentially eliminate the unbounded response for the base excitation. Finally, the equivalent damping ratio is defined and discussed from the viewpoint of vibration control.
机译:提出了一种几何非线性阻尼,并施加到准零刚度(QZS)隔振器上,目的是提高低频振动隔离的性能。 首先提出了系统的力,刚度和阻尼特性。 基于力量和基本激励的平均方法获得QZS系统的稳态解,并通过数值模拟进一步验证。 然后分析QZS振动隔离器的力和位移透射性。 结果表明,增加非线性阻尼可以有效地抑制谐振区域中的力传递率,其在不受影响的较高频率中的隔离性能下。 另外,在QZS隔振器中的非线性阻尼的应用可以基本上消除基础激发的无限响应。 最后,从振动控制的观点来看,定义和讨论了等效阻尼比。

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