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A low-frequency micro-vibration absorber based on a designable quasi-zero stiffness beam
X. Lian; H. Deng; G. Han; F. Jiang; L. Zhu; M. Shao; X. Liu; R. Hu; Y. Gao; M. Ma and X. Zhong
2023
Source PublicationAerospace Science and Technology
ISSN12709638
Volume132
AbstractThis paper presents a low-frequency micro-vibration absorber based on a beam with designable nonlinear stiffness. The material and dimension parameters of the nonlinear characteristics of the beam are discussed by the finite element method (FEM). Based on the nonlinear stiffness characteristics of the beam, the designed micro-vibration absorber has a low-frequency vibration absorption effect and multiple working modes in multiple directions. The effects of structural parameters on the stiffness characteristics of the designed beam are discussed to explore the low-frequency performance. The results of FEM analysis are verified by vibration absorption experiments, and the effectiveness of the low-frequency vibration absorbers is verified by aerospace micro-vibration experiments. © 2022 Elsevier Masson SAS
DOI10.1016/j.ast.2022.108044
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Indexed Bysci ; ei
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Document Type期刊论文
Identifierhttp://ir.ciomp.ac.cn/handle/181722/67667
Collection中国科学院长春光学精密机械与物理研究所
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GB/T 7714
X. Lian,H. Deng,G. Han,et al. A low-frequency micro-vibration absorber based on a designable quasi-zero stiffness beam[J]. Aerospace Science and Technology,2023,132.
APA X. Lian.,H. Deng.,G. Han.,F. Jiang.,L. Zhu.,...&M. Ma and X. Zhong.(2023).A low-frequency micro-vibration absorber based on a designable quasi-zero stiffness beam.Aerospace Science and Technology,132.
MLA X. Lian,et al."A low-frequency micro-vibration absorber based on a designable quasi-zero stiffness beam".Aerospace Science and Technology 132(2023).
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