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Nonlinear vibration, stability, and bifurcation analysis of unbalanced spinning pre-twisted beam

机译:非线性振动,稳定性和非平衡纺纱前扭梁的分岔分析

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摘要

In this paper, an Euler-Bernoulli model has been used for nonlinear vibration, stability, and bifurcation analysis of spinning twisted beams with linear twist angle, and with large transverse deflections, near the primary and parametric resonances. The equations of motion, in the case of pure single mode motion are analyzed by two methods: directly applying multiple scales method and using multiple scales method after discretization by Galerkin's procedure. It is observed that the same final relations are obtained in the two methods. Effects of twist angle, damping ratio, longitudinal to transverse stiffness ratio, and eccentricity on the frequency responses are investigated. Then, the results are compared with the results obtained from Runge-Kutta numerical method on ODEs in a steady state, and confirmed with some previous research. Finally, the results show a good correlation, and it shows that with increasing the twist angle from 0 to 90 degrees, the natural frequencies increase in the first two modes.
机译:在本文中,Euler-Bernoulli模型已用于具有线性扭转角的旋转扭梁的非线性振动,稳定性和分叉分析,并且具有大的横向偏转,近初级和参数谐振。通过两种方法分析了运动方程,在纯单模运动的情况下:直接施加多个尺度方法并在通过Galerkin的过程中离散化后使用多个秤方法。观察到,在两种方法中获得了相同的最终关系。研究了扭转角,阻尼比,纵向横刚度比和偏心响应对频率响应的影响。然后,将结果与在稳定状态下的ODES上的Runge-Kutta数值方法获得的结果进行了比较,并通过一些先前的研究证实了。最后,结果表明良好的相关性,并且表明,随着0到90度的扭转角度,自然频率在前两种模式增加。

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