Optimum Tuning of a Gyroscopic Vibration Absorber for Vibration Control of a Vertical Cantilever Beam with Tip Mass

Faruk Unker, O. Çuvalci
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引用次数: 6

Abstract

In this paper, a symmetric gyro with coupling to the tip mass of a beam mounted on a vibrating base is considered. Taking advantage of the angular momentum of the rotating gyroscope, gyrostabilizer systems are expected to become more widely actualized as they provide an effective means of motion control with several significant advantages for various structures. This paper mainly focused on finding optimized stiffness and damping values that minimize the vibration responses with the derivation of the frequency equations of a special combined gyro-beam system. Correctness of the analytical results is verified by numerical simulations. The comparison with the results from the derivation of the corresponding frequency equations shows that the optimized stiffness and damping values are very accurate.
陀螺式吸振器的最优调谐对具有尖端质量的垂直悬臂梁的振动控制
本文研究了安装在振动基座上的对称陀螺与梁端质量耦合的问题。利用旋转陀螺仪的角动量,陀螺稳定器系统为各种结构提供了一种有效的运动控制手段,具有几个显著的优点,有望得到更广泛的应用。本文主要通过推导一种特殊组合回转梁系统的频率方程,寻找振动响应最小的最优刚度和阻尼值。通过数值模拟验证了分析结果的正确性。与相应频率方程推导结果的比较表明,优化后的刚度和阻尼值是非常准确的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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