On rapid vibration suppression by nonlinear energy sink during first half cycle of oscillation

被引:0
作者
AL-Shudeifat, Mohammad A. [1 ]
Nasar, Rafath Abdul [1 ]
机构
[1] Khalifa Univ Sci & Technol, Abu Dhabi, U Arab Emirates
来源
COMMUNICATIONS IN NONLINEAR SCIENCE AND NUMERICAL SIMULATION | 2025年 / 142卷
关键词
Nonlinear energy sink; Vibro-impact dynamics; Vibro-impact NES; Inverted pendulum; Seismic ground motion; Nonlinear vibration absorber; Tuned mass damper;
D O I
10.1016/j.cnsns.2024.108534
中图分类号
O29 [应用数学];
学科分类号
070104 ;
摘要
Linear and nonlinear vibration absorbers are employed to achieve rapid and effective suppression of the induced vibration into structural dynamical systems to protect their structural integrity and to avoid human and economic losses. The majority of considered high performance vibration absorbers in the literature are still not capable to achieve complete vibration suppression during the first cycle of oscillation. However, the present study provides a new dynamical configuration of a nonlinear vibration absorber that acts as nonlinear energy sink (NES). The proposed configuration has achieved an immediate and complete supersession to the induced vibration into the linear oscillator (LO) during the first half-cycle of oscillation. This NES configuration is based on synergetic mechanism between different kinds of nonlinearities. It incorporates a synergy between the bistable NES, non-smooth vibro-impact NES and the rotational NES nonlinearities. Accordingly, it is named as vibro-impact inverted pendulum (VIIP) NES. It consists of a coupled inverted pendulum with the LO by torsional stiffness element and vibro-impact dynamics. By incorporating these three kinds of NESs nonlinearities in the proposed synergetic VIIP NES, the induced impulsive vibration is found to be completely suppressed during the first half-cycle of oscillation.
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页数:9
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  • [1] Frequency-energy plot and targeted energy transfer analysis of coupled bistable nonlinear energy sink with linear oscillator
    Al-Shudeifat, Mohammad A.
    Saeed, Adnan S.
    [J]. NONLINEAR DYNAMICS, 2021, 105 (04) : 2877 - 2898
  • [2] Shock Mitigation by Means of Low- to High-Frequency Nonlinear Targeted Energy Transfers in a Large-Scale Structure
    AL-Shudeifat, Mohammad A.
    Vakakis, Alexander F.
    Bergman, Lawrence A.
    [J]. JOURNAL OF COMPUTATIONAL AND NONLINEAR DYNAMICS, 2016, 11 (02):
  • [3] Experimental study on an impact vibration absorber
    Ekwaro-Osire, S
    Desen, IC
    [J]. JOURNAL OF VIBRATION AND CONTROL, 2001, 7 (04) : 475 - 493
  • [4] Effect of attachment configuration on impact vibration absorbers
    Ekwaro-Osire, S.
    Ozerdim, C.
    Khandaker, M. P. H.
    [J]. EXPERIMENTAL MECHANICS, 2006, 46 (06) : 669 - 681
  • [5] A pendulum-like tuned vibration absorber and its application to a multi-mode system
    Gong, Xinglong
    Peng, Chao
    Xuan, Shouhu
    Xu, Yulei
    Xu, Zhenbang
    [J]. JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY, 2012, 26 (11) : 3411 - 3422
  • [6] Rotary-impact nonlinear energy sink for shock mitigation: analytical and numerical investigations
    Saeed, Adnan S.
    AL-Shudeifat, Mohammad A.
    Vakakis, Alexander F.
    Cantwell, Wesley J.
    [J]. ARCHIVE OF APPLIED MECHANICS, 2020, 90 (03) : 495 - 521
  • [7] Rotary-oscillatory nonlinear energy sink of robust performance
    Saeed, Adnan S.
    AL-Shudeifat, Mohammad A.
    Vakakis, Alexander F.
    [J]. INTERNATIONAL JOURNAL OF NON-LINEAR MECHANICS, 2019, 117
  • [8] Modeling, simulation, and validation of a pendulum-pounding tuned mass damper for vibration control
    Wang, Wenxi
    Hua, Xugang
    Chen, Zhengqing
    Wang, Xiuyong
    Song, Gangbing
    [J]. STRUCTURAL CONTROL & HEALTH MONITORING, 2019, 26 (04)
  • [9] A Seismic vibration and damage control of high-rise structures with the implementation of a pendulum-type nontraditional tuned mass damper
    Xiang, Ping
    Nishitani, Akira
    Wu, Minger
    [J]. STRUCTURAL CONTROL & HEALTH MONITORING, 2017, 24 (12)
  • [10] Structural vibration control with the implementation of a pendulum-type nontraditional tuned mass damper system
    Xiang, Ping
    Nishitani, Akira
    [J]. JOURNAL OF VIBRATION AND CONTROL, 2017, 23 (19) : 3128 - 3146