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Performance and tuning of a chaotic bi-stable NES to mitigate transient vibrations

机译:混沌双稳态NE的性能和调整,以减轻瞬态振动

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摘要

A nonlinear energy sink (NES) passively reduces transient vibration energy of a typically impact loaded mechanical system. It is locally connected to the vibrating system through a nonlinear connecting stiffness. For a NES to perform efficiently, through targeted energy transfer (TET), the vibration levels need to exceed a well-defined threshold, below which the NES performs poorly. This threshold can be lowered by considering a NES with a bi-stable connecting stiffness. A bi-stable NES (BNES) has two stable equilibria. Besides vibrating in TET regime, a BNES can also vibrate chaotically or close to one of its equilibria, called intra-well vibrations. However, during both chaotic and intra-well vibrations, the mitigating performance of the BNES is poor. Here, a novel tuning method is developed, which finds the boundary between chaotic and TET regime, such that the BNES avoids the chaos and operates with the more performant TET. This boundary is found by numerically calculating the Lyapunov exponent, a measure for chaos. To quantify performance, two algebraic expressions, requiring no simulations, are derived in the paper expressing the speed of vibration mitigation and expressing the residual vibration energy left after TET. The result is a generic tuning methodology that not only ensures the BNES operates in the efficient TET regime, but also guarantees optimal speed of vibration mitigation. The developed performances measures in function of the NES's parameters are to the point and easy to use. The tuned BNES shows a superior robustness w.r.t detuning compared to the linear vibration absorbers.
机译:非线性能量水槽(NES)被动地降低了典型冲击的机械系统的瞬态振动能量。它通过非线性连接刚度本地连接到振动系统。对于一个NE,通过有效地执行,通过目标能量转移(TET),振动水平需要超过明确定义的阈值,下面的NES执行差。通过考虑具有双稳态连接刚度的网元可以降低该阈值。双稳态NES(BNES)有两个稳定的均衡。除了在TET方案中振动,BNE还可以乱砍或接近其平衡之一,称为井内振动。然而,在混乱和井内振动中,BNE的缓解性能差。这里,开发了一种新颖的调谐方法,该方法发现了混沌和TET制度之间的边界,使得BNE避开混乱并与更有表现的TET进行操作。通过数值计算Lyapunov指数,对混乱的措施来发现这种边界。为了量化性能,在表达振动速度减缓的速度并表达在TET之后留下的剩余振动能量的纸张中得出了两个需要模拟的两个代数表达式。结果是通用调谐方法,不仅可以确保BNE在高效的TET制度中运行,而且保证了最佳减振速度。 NES参数功能的开发性能措施是点,易于使用。与线性振动吸收器相比,调谐的BNE显示出优越的鲁棒性W.R.T损伤。

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