Shock Isolation Characteristics of a Bistable Vibration Isolator With Tunable Magnetic Controlled Stiffness

Author:

Yan Bo1,Ling Peng1,Zhou Yanlin2,Wu Chuanyu1,Zhang Wenming3

Affiliation:

1. Faculty of Mechanical Engineering and Automation, Zhejiang Sci-Tech University, Hangzhou 310018, China

2. Key Laboratory of Space Utilization, Technology and Engineering Center for Space Utilization, Chinese Academy of Sciences, Beijing 100094, China

3. School of Mechanical Engineering, Shanghai Jiao Tong University, Shanghai 200240, China

Abstract

Abstract This paper investigates the shock isolation characteristics of an electromagnetic bistable vibration isolator (BVI) with tunable magnetic controlled stiffness. The theoretical model of the BVI is established. The maximum acceleration ratio (MAR), maximum absolute displacement ratio (MADR), and maximum relative displacement ratio (MRDR) are introduced to evaluate the shock isolation performance of the BVI. The kinetic and potential energy are observed to further explore the performance of the BVI. The effects of the potential barrier, shape of potential well, and damping ratio on the BVI are discussed compared with the linear vibration isolators (LVIs). The results demonstrate that the intrawell oscillations and snap-through oscillations are determined by the excitation amplitude and duration time of main pulse. MADR and MRDR of the BVI are smaller than those of the LVI. The maximum acceleration peak amplitude of the BVI is far below that of the LVI, especially when the snap-through oscillation occurs. In brief, the proposed BVI has a better shock isolation performance than the LVI and has the potential to suppress the shock of space structures during the launch and on-orbit deploying process.

Funder

China Postdoctoral Science Foundation

Chinese Academy of Sciences

Natural Science Foundation of Zhejiang Province

Publisher

ASME International

Subject

General Engineering

Reference51 articles.

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