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Investigation of a bistable dual-stage vibration isolator under harmonic excitation

机译:谐波激励下双稳态双级隔振器的研究

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This study explores the steadystate performance of a dual-stage vibration isolator, which is configured by a bistable oscillator and a linear oscillator. The potential force of the bistable stage comprises negative linear and positive cubic nonlinear stiffnesses such that the two restoring force contributions may counterbalance to minimize dynamic force transmission. By applying a first-order harmonic balance, it is predicted that the bistable dual-stage isolator may significantly outperform an equivalent pure linear dual-stage isolator. This conclusion is verified through a series of numerical investigations. Following a parametric study, design guidelines are detailed to achieve performance improvements. Then, the 'valley' response, which is the special phenomenon of the bistable dual-stage isolator due to the counterbalance of the negative linear and positive nonlinear potential forces, is revealed and quantitatively explained. Numerical studies demonstrate the role of initial conditions, and it is shown that the likelihood of beneficial single periodic valley and intra-well responses for isolation purposes can be increased by greater bistable stage damping. Finally, a bistable dual-stage isolator prototype is developed and tested, and the numerical and experimental results verify the theoretical predictions.
机译:这项研究探索了由双稳态振荡器和线性振荡器配置的双级隔振器的稳态性能。双稳态级的潜在力包括负线性刚度和正立方非线性刚度,因此两个恢复力的贡献可以抵消以最小化动态力的传递。通过应用一阶谐波平衡,可以预见,双稳态双级隔离器可能会明显优于等效的纯线性双级隔离器。通过一系列数值研究证实了这一结论。在进行参数研究之后,将详细介绍设计准则以实现性能改进。然后,揭示并定量解释了“谷”响应,它是由于负线性和正非线性势力的平衡而引起的双稳态双级隔离器的特殊现象。数值研究证明了初始条件的作用,并且表明通过增加双稳态级阻尼可以增加有益的单个周期谷和井内响应以实现隔离的可能性。最后,开发并测试了双稳态双级隔离器原型,数值和实验结果验证了理论预测。

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