预测1:1:1同时共振薄壁梁准周期振荡响应的多时间尺度分析

IF 1.2 4区 工程技术 Q3 ACOUSTICS
Ali Kandil, Y. S. Hamed, Jan Awrejcewicz, Nasser A. Saeed
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引用次数: 0

摘要

本文对薄壁旋转梁的横截面水平和垂直挠度进行了研究。为了描述它们的笛卡尔方向,这些偏转由两个常微分方程组成的系统来控制。基于多时间尺度分析,假设截断渐近展开式是给定问题的近似解。此外,提取的微分方程自治系统控制了光束偏转幅度和相位的变化率。梁的旋转速度被调整为在挠度的两个固有频率附近,使梁受到1:1:1的同时共振。为了确定平衡点是否渐近稳定,根据Lyapunov的第一种方法进行了稳定性检验。当光束的速度在其模态固有频率附近时,光束的偏转就变得不稳定。根据光束速度的前向或后向扫描,根据模型的滞后方式,在光束速度的某些值处存在多稳定解。此外,旋转轮毂的一定范围离心力会使光束的偏转呈现准周期响应,这种准周期响应由时间响应、轨道图和振幅谱证实。最后,对外部激励频率作了一些建议,以使梁保持周期性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multiple Time-Scales Analysis to Predict the Quasiperiodic Oscillatory Response of a Thin-Walled Beam Subjected to 1 : 1 : 1 Simultaneous Resonance
This paper introduces a study on the horizontal and vertical deflections of the cross section of a thin-walled rotating beam. These deflections are governed by a system of two ordinary differential equations in order to describe their Cartesian directions. Based on multiple time-scales analysis, truncated asymptotic expansions are assumed to be approximate solutions to the given problem. Furthermore, an extracted autonomous system of differential equations governs the change rate of the amplitudes and phases of the beam deflections. The beam’s rotation speed is adjusted to be in the neighborhood of both of the natural frequencies of the deflections such that the beam is subjected to 1 : 1 : 1 simultaneous resonance. A stability test is conducted according to the first method of Lyapunov in order to determine whether the equilibrium point is asymptotically stable or not. The beam’s deflections turn unstable once its speed is in the neighborhood of its modal natural frequencies. There exists a multistable solution at some values of the beam’s speed depending on the hysteresis manner of the model according to forward or backward sweeping of this speed. Furthermore, a range of centrifugal forces of the rotating hub can make the beam’s deflections exhibit quasiperiodic responses which are confirmed by time response, orbital map, and amplitude spectrum. Eventually, some remarks are recommended for the external excitation frequency in order that the beam stays in the periodic behavior.
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来源期刊
Shock and Vibration
Shock and Vibration 物理-工程:机械
CiteScore
3.40
自引率
6.20%
发文量
384
审稿时长
3 months
期刊介绍: Shock and Vibration publishes papers on all aspects of shock and vibration, especially in relation to civil, mechanical and aerospace engineering applications, as well as transport, materials and geoscience. Papers may be theoretical or experimental, and either fundamental or highly applied.
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