Analysis and design of a novel arrayed magnetic spring with high negative stiffness for low-frequency vibration isolation

被引:56
|
作者
Wu, Jiulin [1 ]
Zeng, Lizhan [1 ]
Han, Bin [1 ]
Zhou, Yifan [1 ]
Luo, Xin [1 ]
Li, Xiaoqing [1 ]
Chen, Xuedong [1 ]
Jiang, Wei [1 ]
机构
[1] Huazhong Univ Sci & Technol, State Key Lab Digital Mfg Equipment & Technol, 1037 Luoyu Rd, Wuhan 430074, Hubei, Peoples R China
基金
国家重点研发计划; 中国国家自然科学基金;
关键词
arrayed-magnetic-spring; negative stiffness density; vibration isolation; magnetic charge model; stiffness nonlinearity; QUASI-ZERO-STIFFNESS; NONLINEAR ISOLATOR;
D O I
10.1016/j.ijmecsci.2021.106980
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Paralleling magnetic negative stiffness mechanism (NSM) with positive stiffness serves as an effective way to resolve the inherent contradiction between high load capacity and ultra-low frequency vibration isolation ability. Nevertheless, the stiffness nonlinearity and oversize of common magnetic NSMs restrict their further applications. In this paper, a novel compact arrayed-magnetic-spring with negative stiffness (AMS-NS) is proposed. The AMS-NS, which consists of cuboidal magnets arranged as a rectangular array, possesses high negative stiffness density and ameliorative nonlinearity. An analytical model of the AMS-NS is established based on the magnetic charge model and validated by static experiments. Parametric studies are conducted to provide guidelines for the optimal design of the AMS-NS. In addition, the nonlinear displacement transmissibility of an isolator with the AMS-NS and positive stiffness in parallel (APSP) is derived utilizing the harmonic balance method, and effect of stiffness characteristic of the AMS-NS on the isolation performance are furtherly investigated. Finally, dynamic experiments were conducted on a prototype with APSP, the results demonstrated that the proposed AMS-NS has high negative stiffness density and can effectively reduce the resonance frequency to broaden the vibration isolation band; and the analytical results showed good agreements with the experimental results.
引用
收藏
页数:18
相关论文
共 50 条
  • [41] Inverse-designed metastructures with customizable low dynamic stiffness characteristics for low-frequency vibration isolation
    Hu, Changzhi
    Wan, Zhishuai
    Li, Zonghan
    Tan, Ximing
    Wang, Lichen
    Chen, Mingji
    [J]. European Journal of Mechanics, A/Solids, 2025, 110
  • [42] Air spring systems for low-frequency vibration insulation
    Stöter, B
    [J]. VIBRATIONS IN PLANT AND EQUIPMENT, 2001, 1606 : 401 - 415
  • [43] An ultra-low frequency pendulum isolator using a negative stiffness magnetic spring
    Zheng, Yisheng
    Zhang, Xinong
    Ma, Chicheng
    Zhang, Zhifeng
    Zhang, Shuai
    [J]. INTERNATIONAL JOURNAL OF APPLIED ELECTROMAGNETICS AND MECHANICS, 2016, 52 (3-4) : 1313 - 1320
  • [44] A quasi-zero stiffness mechanism with monolithic flexible beams for low-frequency vibration isolation
    Hou, Shuai
    Wei, Jianzheng
    [J]. MECHANICAL SYSTEMS AND SIGNAL PROCESSING, 2024, 210
  • [45] A Variable Stiffness and Damping Control Strategy for Improving Vibration Isolation Performances in Low-Frequency Excitation
    Xing, Xudong
    Chen, Zhaobo
    Feng, Zhongqiang
    [J]. JOURNAL OF VIBRATION ENGINEERING & TECHNOLOGIES, 2023, 11 (04) : 1595 - 1608
  • [46] The X-shaped structure with nonlinear positive stiffness compensation for low-frequency vibration isolation
    Yu, Chuanyun
    Jiang, Qiubo
    Fu, Qidi
    Yu, Kangfan
    Zhang, Jianrun
    Zhang, Ning
    [J]. INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2023, 259
  • [47] An Origami-Inspired Quasi-zero Stiffness Structure for Low-Frequency Vibration Isolation
    Zeng, Peng
    Yang, Yuanhan
    Huang, Long
    Yin, Lairong
    Liu, Bei
    [J]. JOURNAL OF VIBRATION ENGINEERING & TECHNOLOGIES, 2023, 11 (04) : 1463 - 1475
  • [48] Topology optimization of programable quasi-zero-stiffness metastructures for low-frequency vibration isolation
    Xu, Yuqi
    Dong, Hao-Wen
    Wang, Yue-Sheng
    [J]. INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2024, 280
  • [49] A Variable Stiffness and Damping Control Strategy for Improving Vibration Isolation Performances in Low-Frequency Excitation
    Xudong Xing
    Zhaobo Chen
    Zhongqiang Feng
    [J]. Journal of Vibration Engineering & Technologies, 2023, 11 : 1595 - 1608
  • [50] Design of an effective vibration isolation system for measurements sensitive to low-frequency vibrations
    Iwaya, Katsuya
    Shimizu, Ryota
    Teramura, Akira
    Sasaki, Seiji
    Itagaki, Toru
    Hitosugi, Taro
    [J]. JOURNAL OF VACUUM SCIENCE & TECHNOLOGY A, 2012, 30 (06):