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Tunable negative stiffness spring using maxwell normal stress

delete2021-03-01
delete48
PRE
AI
S
Shujin Yuan
孙毅 (Yi Sun)
王敏 (Min Wang)
J
Jiheng Ding
赵菁蕾 cover
赵菁蕾 (Jinglei Zhao)
Y
Yining Huang
Y
Yan Peng
S
Shaorong Xie
罗钧 (Jun Luo)
H
Huayan Pu *
刘富强 cover
刘富强 (Fuqiang Liu)
L
Long Bai
X
Xiao-Dong Yang
DOI:10.1016/j.ijmecsci.2020.106127delete
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Abstract

Abstract

En 中文
A vibration isolator based on a tunable negative stiffness mechanism combines the advantages of high-staticlow-dynamic stiffness (HSLDS) isolators to expand the isolation frequency band and variable stiffness isolators to suppress resonance. In this paper, a novel tunable negative stiffness spring using Maxwell normal stress (SMNS) is proposed. The stiffness tunable range and energy utilization efficiency are greatly improved due to the newly designed magnetic circuit. Moreover, the electromagnetic negative stiffness device has the advantages of no friction, no backlash, compact structure and easy control. An analytical model of the electromagnetic force is built based on magnetic circuit analysis, and the parameter analysis is performed. An HSLDS isolator is constructed by connecting the SMNS in parallel with a linear isolator. The stiffness and vibration isolation performance are measured. The experimental results show that the SMNS produces an online tunable negative stiffness, which expands the isolation bandwidth and significantly improves the vibration isolation performance.
Keywords:
Tunable negative stiffness
Electromagnetic spring
Vibration control
High-static-low-dynamic stiffness
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Journal

International Journal of Mechanical Sciences cover
International Journal of Mechanical Sciences
IF:
9.4
Papers:
1.0W
Citations:
4.5W

Organization

C
Chongqing University
Scholars:
5.1W
Papers: 4.1W
Citations: 6.0W
B
Beijing University of Technology
Scholars:
2.8W
Papers: 2.1W
Citations: 2.7W
S
shanghai university
Scholars:
3.9W
Papers: 2.7W
Citations: 52
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