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Numerical and experimental investigation of a highly effective single-sided vibro-impact non-linear energy sink for shock mitigation

机译:高效减振单侧振动非线性减震器的数值和实验研究

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摘要

In this paper a highly asymmetric, lightweight, vibro-impact non-linear energy sink (NES) leading to very efficient passive non-linear targeted energy transfer (TET) is investigated. To this end, a two degree-of-freedom linear system (the primary structure) is coupled to a single-sided vibro-impact (VI) attachment with highly asymmetric impact non-linearity (the VI NES). The proposed NES passively absorbs and rapidly dissipates a considerable amount of the impulse energy induced into the linear structure, leading to very effective shock mitigation compared to a double-sided (symmetric) VI NES. We find that appropriate selection of the weak linear stiffness that couples the non-linear VI attachment to the linear structure plays a significant role in the proposed design. Moreover, in contrast to the double-sided VI NES which has optimal performance for a narrow range of input energies, the proposed single-sided asymmetric VI NES maintains a high level of performance over a broad range of high input energies. Hence, the proposed design is especially suitable for severe shock mitigation in infrastructure. To quantify the enhanced shock mitigation performance of the asymmetric VI NES we employ measures of effective damping and stiffness developed in previous works to demonstrate that the primary structure with attached NES possesses drastically increased effective damping and stiffness compared to its nominal properties when no NES is attached. A series of experimental results fully validates the theoretical predictions.
机译:在本文中,研究了一种高度不对称,重量轻,振动冲击的非线性能量吸收器(NES),可产生非常有效的被动非线性目标能量转移(TET)。为此,将两自由度线性系统(主要结构)耦合到具有高度非对称冲击非线性(VI NES)的单侧振动冲击(VI)附件。与双面(对称)VI NES相比,拟议的NES被动吸收并快速消散了感应到线性结构中的大量脉冲能量,从而非常有效地减轻了震动。我们发现,将非线性VI附着耦合到线性结构的弱线性刚度的适当选择在建议的设计中起着重要作用。此外,与双面VI NES在狭窄的输入能量范围内具有最佳性能相反,所提出的单面非对称VI NES在宽范围的高输入能量下仍保持较高的性能。因此,所提出的设计特别适合于减轻基础设施的冲击。为了量化非对称VI NES增强的减震性能,我们采用了先前工作中开发的有效阻尼和刚度测量方法,以证明与未连接NES的标称特性相比,附有NES的主要结构具有显着提高的有效阻尼和刚度。 。一系列实验结果充分验证了理论预测。

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