Damping of resonance vibrations of gyroscopic systems by a liquid damper with elastic ribs
Authors: Chernikov S.A., Xue Y.
Published in issue: #2(86)/2019
DOI: 10.18698/2308-6033-2019-2-1851
Category: Aviation and Rocket-Space Engineering | Chapter: Aircraft Dynamics, Ballistics, Motion Control
The dynamic characteristics of weakly damped gyrosystems have pronounced resonant properties in the frequency range of nutation and elastic vibrations. Ring dampers, containing viscous fluid in a closed tube, are already widely used for damping vibrations of the spacecraft and gyroscopic systems. However, the efficiency of such a damper is limited. To further enhance the performance of the damper, the elastic slat screens are introduced. In this paper the possibility of damping of resonant vibrations of a gyroscopic system by a liquid damper with elastic ribs is considered. Approximate equations of the disturbed motion of a gyro system with a damper are found. A method for optimizing damper parameters is proposed. By comparing the obtained amplitude-frequency characteristics with those without elastic ribs, we can draw such a conclusion that introduction of an elastic connection between the object and the liquid rotation significantly improve the damping performance of resonant vibrations of gyroscopic systems. The obtained results for designing liquid damper can be used not only in the gyroscopic field, but also in other areas
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