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Vibration suppression and modal energy transfers in a linear beam with attached vibro-impact nonlinear energy sinks

机译:振动抑制和模态能量在带有附接的振动冲击非线性能量下降的线性梁中

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We present a comprehensive study of nonlinear resonant modal energy scattering and passive vibration suppression in a linear cantilever beam with vibro-impact nonlinear energy sinks (VI NESs) attached to it. It is well-known that vibro-impacts are a strong source of non-smooth nonlinearity, resulting in rapid and intense multi-scale energy scattering from low-to-high frequencies in the modal space of the beam. We present a direct correlation between such low-to-high frequency nonlinear energy scattering induced by vibro-impacts and vibration suppression of the beam vibrations under both sweep- and constant-frequency harmonic excitations. In particular, we study the intensity of the collisions between the tip of the beam and the particles of the VI NESs by means of an event-driven method based on an explicit variable time step integration scheme, and relate the dynamics of the integrated beam-VI-NES system to the induced resonant energy scattering from low beam modes to higher ones. On this basis, the effects of the mass ratio and clearance between the absorber and the beam on the resonant energy scattering are presented. Our aim is to perform predictive design of the VI NESs for effective and robust vibration mitigation of the beam response. To this end we perform optimization studies on the mass ratio and clearance between the absorber and beam for the case of single and multiple VI NESs and identify regions of optimal suppression. Besides, since the single VI NES is only effective in a limited frequency and amplitude range - as its dynamics is energy-dependent - using multiple VI NESs with optimized parameters can extend the frequency range of effective vibration suppression, rendering the resulting vibration mitigation more robust to variations of the applied excitations. (C) 2020 Elsevier B.V. All rights reserved.
机译:我们在带有振动冲击非线性能量水槽(VI NES)的线性悬臂梁中的非线性谐振模态能量散射和被动振动抑制的综合研究。众所周知,振动撞击是非平滑非线性的强源,从光束的模态空间中的低到高频率产生快速和强度的多尺度能量散射。我们在扫描和恒定频率谐波激发下,通过振动冲击和横梁振动振动抑制诱导的这种低高频率非线性能量散射之间的直接相关性。特别地,我们通过基于显式可变时间步长集成方案的事件驱动方法研究光束尖端和VI NESS的粒子之间的碰撞强度,并涉及集成波束的动态 - VI-NES系统从低光束模式到更高的谐振能量散射。在此基础上,介绍了吸收器与梁之间的质量比和间隙对共振能量散射的影响。我们的目的是对VI NESS进行预测设计,以实现对光束响应的有效和鲁棒振动减轻的。为此,我们对单一和多个VI NESS案例的吸收器和光束之间的质量比和间隙进行优化研究,并确定最佳抑制区域。此外,由于单个VI NE仅在有限的频率和幅度范围内有效 - 因为它的动态是能量依赖的 - 使用具有优化参数的多个VI NES可以延长有效振动抑制的频率范围,使得产生的振动减缓更加强大对应用激发的变化。 (c)2020 Elsevier B.v.保留所有权利。

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