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第 3 期 徐培迪,等: Kresling 折纸隔振器的理论模型与试验研究 641
spring-rod mechanism[J]. Journal of Vibration and Con⁃
参考文献: trol, 2022, 28(13-14): 1781-1791.
[14] MENG H, HUANG X C, CHEN Y Y, et al. Structur⁃
al vibration absorption in multilayered sandwich struc⁃
[1] MA Z Z, ZHOU R P, YANG Q C, et al. A semi-ac⁃
tures using negative stiffness nonlinear oscillators[J].
tive electromagnetic quasi-zero-stiffness vibration isola⁃
Applied Acoustics, 2021, 182: 108240.
tor[J]. International Journal of Mechanical Sciences,
[15] LING P, MIAO L L, ZHANG W M, et al. Cock⁃
2023, 252: 108357.
[2] KOCAK K, YILMAZ C. Design of a compliant lever- roach-inspired structure for low-frequency vibration iso⁃
lation[J]. Mechanical Systems and Signal Processing,
type passive vibration isolator with quasi-zero-stiffness
2022, 171: 108955.
mechanism[J]. Journal of Sound and Vibration, 2023,
[16] SUN X T, QI Z F, XU J. Vibration properties of a
558: 117758.
knee bio-inspired nonlinear isolation structure[J]. Inter⁃
[3] ZUO S, WANG D Y, ZHANG Y S, et al. Design and
national Journal of Non-Linear Mechanics, 2022, 147:
testing of a parabolic cam-roller quasi-zero-stiffness vi⁃
bration isolator[J]. International Journal of Mechanical 104245.
[17] YAN G, QI W H, LU J J, et al. Bio-inspired multi-
Sciences, 2022, 220: 107146.
[4] CHOWDHURY S, BANERJEE A. The impacting vi⁃ joint-collaborative vibration isolation[J]. Journal of
Sound and Vibration, 2024, 568: 118089.
bration absorbers[J]. Applied Mathematical Modelling,
2024, 127: 454-505. [18] CARRELLA A, BRENNAN M J, WATERS T P.
[5] CHANG Y P, ZHOU J X, WANG K, et al. A quasi- Static analysis of a passive vibration isolator with quasi-
zero-stiffness dynamic vibration absorber[J]. Journal of zero-stiffness characteristic[J]. Journal of Sound and Vi⁃
bration, 2007, 301(3-5): 678-689.
Sound and Vibration, 2021, 494: 115859.
[6] MAHE V, RENAULT A, GROLET A, et al. Sub⁃ [19] YAN B, MA H Y, ZHAO C X, et al. A vari-stiffness
harmonic centrifugal pendulum vibration absorbers al⁃ nonlinear isolator with magnetic effects: theoretical
lowing a rotational mobility[J]. Mechanical Systems modeling and experimental verification[J]. International
and Signal Processing, 2022, 177: 109125. Journal of Mechanical Sciences, 2018, 148: 745-755.
[7] BASTA E, GHOMMEM M, EMAM S. Vibration [20] LING P, MIAO L L, YE B L, et al. Ultra-low fre⁃
suppression of nonlinear rotating metamaterial beams quency vibration isolation of a novel click-beetle-in⁃
[J]. Nonlinear Dynamics, 2020, 101(1): 311-332. spired structure with large quasi-zero stiffness region
[8] ZHAO F, JI J C, YE K, et al. Increase of quasi-zero [J]. Journal of Sound and Vibration, 2023, 558:
stiffness region using two pairs of oblique springs[J]. 117756.
Mechanical Systems and Signal Processing, 2020, [21] 王毅, 徐道临, 周加喜 . 滚球型准零刚度隔振器的特
144: 106975. 性分析[J]. 振动与冲击, 2015, 34(4): 142-147.
[9] WEN G L, HE J F, LIU J, et al. Design, analysis and WANG Y, XU D L, ZHOU J X. Characteristic analy⁃
semi-active control of a quasi-zero stiffness vibration iso⁃ sis of a ball-type vibration isolator with quasi-zero-stiff⁃
lation system with six oblique springs[J]. Nonlinear Dy⁃ ness[J]. Journal of Vibration and Shock, 2015, 34(4):
namics, 2021, 106(1): 309-321. 142-147.
[10] ZHANG Y, LIU Q H, LEI Y G, et al. Circular Hal⁃ [22] LIU X T, HUANG X C, HUA H X. On the character⁃
bach negative stiffness isolating from torsional vibra⁃ istics of a quasi-zero stiffness isolator using Euler buck⁃
tion: design, modeling and experiments[J]. Mechanical led beam as negative stiffness corrector[J]. Journal of
Systems and Signal Processing, 2023, 202: 110711. Sound and Vibration, 2013, 332(14): 3359-3376.
[11] LU J J, YAN G, QI W H, et al. Load-adaptive quasi- [23] 方虹斌, 吴海平, 刘作林, 等 . 折纸结构和折纸超材料
zero stiffness vibration isolation via dual electromagnetic 动力学研究进展[J]. 力学学报, 2022, 54(1): 1-38.
stiffness regulation[J]. Journal of Sound and Vibration, FANG H B, WU H P, LIU Z L, et al. Advances in
2023, 567: 118059. the dynamics of origami structures and origami metama⁃
[12] YAO Y H, LI H G, LI Y, et al. Analytical and experi⁃ terials[J]. Chinese Journal of Theoretical and Applied
mental investigation of a high-static-low-dynamic stiff⁃ Mechanics, 2022, 54(1): 1-38.
ness isolator with cam-roller-spring mechanism[J]. In⁃ [24] ZENG P, YANG Y, HUANG L, et al. An origami-in⁃
ternational Journal of Mechanical Sciences, 2020, 186: spired quasi-zero stiffness structure for low-frequency vi⁃
105888. bration isolation[J]. Journal of Vibration Engineering &
[13] ZHANG Y L, WEI G, WEN H, et al. Design and Technologies, 2023, 11(4): 1463-1475.
analysis of a vibration isolation system with cam-roller- [25] YE K, JI J C. An origami inspired quasi-zero stiffness

