Design of a Miniaturized Pneumatic Vibration Isolator With High-Static-Low-Dynamic Stiffness

Author:

Shan Yuhu1,Wu Wenjiang1,Chen Xuedong1

Affiliation:

1. The State Key Laboratory of Digital Manufacturing Equipment and Technology, Huazhong University of Science and Technology, Wuhan, Hubei Province, China e-mail:

Abstract

In the ultraprecision vibration isolation systems, it is desirable for the isolator to have a larger load bearing capacity and a broader isolation bandwidth simultaneously. Generally, pneumatic spring can bear large load and achieve relatively low natural frequency by enlarging its chamber volume. However, the oversized isolator is inconvenient to use and might cause instability. To reduce the size, a miniaturized pneumatic vibration isolator (MPVI) with high-static-low-dynamic stiffness (HSLDS) is developed in this paper. The volume of proposed isolator is minimized by a compact structure design that combines two magnetic rings in parallel with the pneumatic spring. The two magnetic rings are arranged in the repulsive configuration and can be mounted into the chamber to provide the negative stiffness. Then dynamic model of the developed MPVI is built and the isolation performances are analyzed. Finally, experiments on the isolator with and without the magnetic rings are conducted. The final experimental results are consistent with the dynamical model and verify the effectiveness of the developed vibration isolator.

Publisher

ASME International

Subject

General Engineering

Reference14 articles.

1. Modeling and Analysis of Dual-Chamber Pneumatic Spring With Adjustable Damping for Precision Vibration Isolation;J. Sound Vib.,2011

2. Recent Advances in Nonlinear Passive Vibration Isolators;J. Sound Vib.,2008

3. Negative-Stiffness-Mechanism Vibration Isolation Systems;Proc. SPIE

4. Analytical and Experimental Investigation of Buckled Beams as Negative Stiffness Elements for Passive Vibration and Shock Isolation Systems;ASME J. Vib. Acoust.,2014

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