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APPLICATION OF TIME-INCREASING INTERNAL PRESSURE IN VIBRATION REDUCTION OF VISCOELASTIC ROTARY BEAMS

机译:内压随时间的增加在粘弹性旋转梁减振中的应用

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摘要

Vibration suppression of a viscoelastic rotary beam using time-increasing internal pressure is presented in this paper. Coupled nonlinear longitudinal/bending vibration of a beam is assumed and, the governing equations of motion are derived for a rotating beam with time—varying internal pressure. Numerical simulations are carried out for various increasing porfiles of the internal pressure and efficiency of the proposed suppression technique is evaluated in free and forced vibration. Resonant harmonic excitations as well as the broadband random excitations are also taken into account and performance of the control system is investigated. Application of the suppression system is also studied in case of angular decelerating rotary beams in which softening behavior occurs due to decreasing centrifugal force.
机译:本文提出了利用时间增加的内压抑制粘弹性旋转梁的方法。假定梁的非线性纵向/弯曲振动耦合,并且随时间变化的内部压力推导了旋转梁的运动控制方程。对各种增加的内部压力剖面进行了数值模拟,并在自由振动和强制振动中评估了所提出的抑制技术的效率。还考虑了谐振谐波激励以及宽带随机激励,并研究了控制系统的性能。还研究了在角减速旋转梁的情况下抑制系统的应用,其中由于离心力的降低而出现了软化行为。

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