首页> 外文期刊>Proceedings of the institution of mechanical engineers >Equivalent modal damping, stiffening and energy exchanges in multi-degree-of freedom systems with strongly nonlinear attachments
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Equivalent modal damping, stiffening and energy exchanges in multi-degree-of freedom systems with strongly nonlinear attachments

机译:具有强非线性附件的多自由度系统中的等效模态阻尼,加劲和能量交换

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摘要

We consider the response of a linear structural system when coupled to an attachment containing strong or even essential nonlinearities. For this system, the attachment, designated as a nonlinear energy sink, is designed as a nonlinear vibration absorber, serving to dissipate energy from the structural system. Moreover, the attachment not only leads to a reduction in the total energy of the system, but also nonlinearly couples together the vibration modes of the linear structural system. When the structure is impulsively loaded, the nonlinear energy sink serves to both dissipate and redistribute energy, thus enhancing the observed structural dissipation. The effect of the nonlinear attachment on the linear primary system can be quantified in terms of equivalent measures for the damping and frequency of each mode, derived through consideration of the instantaneous energy balance in each mode. The influence of the nonlinear energy sink on the structural response is illustrated with an impulsively forced two-degree-of-freedom primary system, representing a two-story structure, with different types of nonlinear energy sink attached to the top floor. We perform optimization studies in order to design the nonlinear energy sink for optimal shock mitigation of the primary system. The proposed methodology is based only on measured time series without resorting to frequency analysis. As such, it is valid for strongly nonlinear systems as well as for systems with nonsmooth nonlinearities, and is suited to both simulated and experimental results. Finally, an experimental validation of the enhanced dissipation introduced by the nonlinear energy sink is provided, and the experimental response is compared against numerical simulation of the corresponding analytical model to illustrate the effectiveness of the nonlinear energy sink design. Thus, we analytically predict and experimentally verify the efficacy of the nonlinear energy sink to significantly reduce the response of the two degree-of-freedom system subject to shock excitation.
机译:当我们考虑包含强烈甚至必要非线性的附件时,我们会考虑线性结构系统的响应。对于该系统,称为非线性能量吸收器的附件被设计为非线性振动吸收器,用于耗散结构系统的能量。而且,这种连接不仅导致系统总能量的减少,而且使线性结构系统的振动模式非线性地耦合在一起。当结构受到脉冲载荷时,非线性能量宿既用于耗散能量,又用于重新分配能量,从而增强了观察到的结构耗散。可以通过考虑每种模式下的瞬时能量平衡来得出等效的每种模式的阻尼和频率度量,从而量化非线性附加对线性初级系统的影响。非线性能量吸收器对结构响应的影响通过脉冲强迫的两自由度主系统表示,该系统表示一个两层结构,并且不同类型的非线性能量吸收器连接到顶层。我们进行优化研究以设计非线性能量吸收器,以最佳地减轻主系统的冲击。所提出的方法仅基于测得的时间序列,而无需借助频率分析。因此,它对于强非线性系统以及具有非平滑非线性的系统都是有效的,并且适合于模拟和实验结果。最后,对非线性能量吸收器引入的增强耗散进行了实验验证,并将实验响应与相应分析模型的数值模拟进行了比较,以说明非线性能量吸收器设计的有效性。因此,我们通过分析预测和实验验证了非线性能量宿的功效,该能量宿可显着降低受到冲击激励的两个自由度系统的响应。

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  • 作者单位

    Department of Mechanical Engineering, The University of Akron, Akron, OH 44325 3903, USA;

    Department of Aerospace Engineering, University of Illinois at Urbana-Champaign, USA;

    Department of Civil and Environmental Engineering, Newmark Civil Engineering Laboratory, MC-250, University of Illinois at Urbana-Champaign, USA;

    Department of Mechanical Science and Engineering, University of Illinois at Urbana-Champaign, USA;

    Department of Mechanical Engineering, The University of Akron, USA;

    Department of Civil and Environmental Engineering, Newmark Civil Engineering Laboratory, MC-250, University of Illinois at Urbana-Champaign, USA;

    Department of Civil and Environmental Engineering, Newmark Civil Engineering Laboratory, MC-250, University of Illinois at Urbana-Champaign, USA;

    Department of Aerospace Engineering, University of Illinois at Urbana-Champaign, USA;

    Department of Mechanical Science and Engineering, University of Illinois at Urbana-Champaign, USA;

    Department of Aerospace Engineering, University of Illinois at Urbana-Champaign, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Structural damping; essential nonlinearities; modeling and simulation; experimental analysis; shock mitigation;

    机译:结构阻尼;基本非线性;建模和仿真;实验分析减震;

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