Page 76 - 《振动工程学报》2026年第3期
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676                                振   动   工   程   学   报                               第 39 卷

             [21] LIU Q S, LIU H P, ZHANG J. Optimization of nonlin⁃  [26] KIM D K. Micro-vibration model and parameter estima⁃
                   ear  energy  sink  using  Euler-buckled  beams  combined   tion method of a reaction wheel assembly[J]. Journal of
                   with piezoelectric energy harvester[J]. Mechanical Sys⁃  Sound and Vibration, 2014, 333(18): 4214-4231.
                   tems and Signal Processing, 2025, 223: 111812.   [27] LIU  H  P,  SHI  W  H.  Vibration  suppression  of  a  fly⁃
             [22] 刘海平, 申大山, 王添 . 不同类型欧拉屈曲梁非线性                        wheel system using a novel nonlinear vibration absorber
                   吸 振 器 动 态 特 性 的 影 响 研 究[J].  振 动 工 程 学 报 ,        with  an  Euler  buckled  beam[J].  Journal  of  Physics:
                   2022, 35(3): 643-651.                             Conference Series, 2016, 744(1): 012127.
                                                                [28] 刘兴天, 孔祥森, 申军烽, 等 . 卫星遥感器微振动隔离
                   LIU Haiping, SHEN Dashan, WANG Tian. Character⁃
                                                                     用液体阻尼隔振器[J]. 光学精密工程, 2017, 25(9):
                   istics  of  different  kinds  of  nonlinear  dynamic  vibration
                                                                     2448-2453.
                   absorber using Euler-buckled beam[J]. Journal of Vibra⁃
                                                                     LIU  Xingtian,  KONG  Xiangsen,  SHEN  Junfeng,  et
                   tion Engineering, 2022, 35(3): 643-651.
                                                                     al.  Vibration  isolator  with  relaxation  type  damping  for
             [23] LIU H P, ZHANG J, SHEN D S, et al. Euler-buckled
                                                                     micro-vibration  isolation  from  satellite  remote  sensors
                   beam based nonlinear energy sink for vibration reduction
                                                                    [J].  Optics  and  Precision  Engineering,  2017,  25(9):
                   of flywheel system under different excitations[J]. Jour⁃
                                                                     2448-2453.
                   nal of Vibration and Control, 2024, 30(19-20): 4252-
                                                                [29] 刘海平, 王耀兵, 孙鹏飞, 等 . 非线性能量阱对飞轮振
                   4271.
                                                                     动抑制效果的实验研究[J]. 宇航学报, 2018, 39(5):
             [24] LI Z Y, TANG L H, YANG W Q, et al. Transient re⁃
                                                                     562-568.
                   sponse of a nonlinear energy sink based piezoelectric vi⁃
                                                                     LIU  Haiping,  WANG  Yaobing,  SUN  Pengfei,  et  al.
                   bration  energy  harvester  coupled  to  a  synchronized
                                                                     Experimental research on vibration suppression for a fly⁃
                   charge  extraction  interface[J].  Nano  Energy,  2021,
                                                                     wheel based on nonlinear energy sink[J]. Journal of As⁃
                   87: 106179.
                                                                     tronautics, 2018, 39(5): 562-568.
             [25] LI  Z  Y,  XIONG  L  Y,  TANG  L  H,  et  al.  Modeling
                   and harmonic analysis of energy extracting performance   第一作者: 刘庆生(1999—),男,硕士研究生。
                   of a piezoelectric nonlinear energy sink system with AC   E-mail: lqs18713303630@163.com
                   and  DC  interface  circuits[J].  Mechanical  Systems  and   通信作者: 刘海平(1982—),男,博士,教授。
                   Signal Processing, 2021, 155: 107609.                 E-mail: liuhaiping@ustb.edu.cn
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