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Rotary-impact nonlinear energy sink for shock mitigation: analytical and numerical investigations

机译:减轻冲击的旋转冲击非线性能量吸收器:分析和数值研究

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摘要

The nonlinear energy sink (NES) is a lightweight, strongly nonlinear dynamical attachment coupled to a (typically linear) large-scale primary structure for passive vibration mitigation. There are two nonlinear mechanisms governing the dynamics of the coupled system: irreversible targeted energy transfer (TET) from the primary structure to the NES, where energy is confined and locally dissipated, and NES-induced nonlinear energy scattering between the structural modes of the primary structure. In the literature, different NES designs have been investigated to optimize their nonlinear effects on the primary structures. One such design is the rotary NES consisting of a small mass inertially coupled to the primary structure through a rigid arm; another is the vibro-impact NES with non-smooth nonlinearities and inelastic collisions with the primary structure. These types have been found to achieve strong and rapid TET and are less sensitive to energy fluctuations. In this work, a hybrid NES design is proposed based on the synergetic synthesis of the rotary and impact-based NESs in a single rotary-impact NES (RINES). The RINES incorporates a fixed rigid barrier attached (typically) to the top floor of the primary structure to inflict impacts between its rotating mass and the top floor. An analytical study to evaluate its capacity to engage in resonance capture with a primary structure is presented first, followed by numerical investigations of cases when the RINES is attached to the top floors of small- and large-scale linear primary structures under impulsive excitation. The non-smooth nonlinearities induced through the consecutive impacts resulted in effective broadband shock mitigation at highly energetic response regimes, whereas the nonlinear inertial coupling enables similar beneficial mitigation capacity at lower-energetic response regimes. Hence, the combined effect of non-smooth and inertial nonlinearities enables effective passive mitigation capacity for a broad range of applied impulsive energies.
机译:非线性能量吸收器(NES)是一种轻型,强烈非线性的动力附件,与(通常为线性的)大规模初级结构耦合在一起,以减轻被动振动。有两种控制耦合系统动力学的非线性机制:从初级结构到NES的不可逆目标能量转移(TET),其中能量被约束并局部耗散,以及NES引起的初级结构模式之间的非线性能量散射。结构体。在文献中,已经研究了不同的NES设计以优化其对主要结构的非线性影响。一种这样的设计是旋转式NES,它由小的质量通过刚性臂惯性地耦合到主结构上。另一个是具有非光滑非线性和与主要结构发生非弹性碰撞的震动冲击式NES。已经发现这些类型实现了强而快速的TET,并且对能量波动不那么敏感。在这项工作中,基于在单个旋转冲击式NES(RINES)中旋转和基于冲击的NES的协同合成,提出了一种混合NES设计。 RINES包含一个固定的刚性屏障(通常连接到主结构的顶层),以在其旋转质量和顶层之间施加冲击。首先介绍了分析研究,以评估其参与具有初级结构的共振捕获的能力,然后对在脉冲激励下将RINES附着到小型和大型线性初级结构顶层的情况进行了数值研究。连续冲击引起的非平滑非线性导致在高能响应状态下有效的宽带减震,而非线性惯性耦合在低能响应状态下实现了类似的有益缓解能力。因此,非平滑和惯性非线性的组合效应使得有效的被动缓解能力适用于广泛的施加脉冲能量。

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