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Nonlinear dynamics of axially moving beam with coupled longitudinal-transversal vibrations

机译:轴向和横向耦合振动的轴向运动梁的非线性动力学

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摘要

In this study, the nonlinear vibrations of an axially moving beam are investigated by considering the coupling of the longitudinal and transversal motion. The Galerkin method is used to truncate the governing partial differential equations into a set of coupled nonlinear ordinary differential equations. By detuning the axially velocity, the exact parameters with which the system may turn to internal resonance are detected. The method of multiple scales is applied to the governing equations to study the nonlinear dynamics of the steady-state response caused by the internal-external resonance. The saturation and jump phenomena of such system have been reported by investigating the nonlinear amplitude-response curves with respect to external excitation, internal, and external detuning parameters. The longitudinal external excitation may trigger only longitudinal response when excitation amplitude is weak. However, beyond the critical excitation amplitude, the response energy will be transferred from the longitudinal motion to the transversal motion even the excitation is employed on the longitudinal direction. Such energy transfer due to saturation has the potential to be used in the vibration suppression.
机译:在这项研究中,通过考虑纵向运动和横向运动的耦合来研究轴向运动梁的非线性振动。 Galerkin方法用于将控制性偏微分方程截断为一组耦合的非线性常微分方程。通过使轴向速度失谐,可以检测出系统可用于内部共振的确切参数。将多尺度方法应用于控制方程,以研究由内外共振引起的稳态响应的非线性动力学。通过研究关于外部激励,内部和外部失谐参数的非线性幅度响应曲线,已经报道了这种系统的饱和和跳跃现象。当激励幅度较弱时,纵向外部激励可能仅触发纵向响应。然而,超过临界激励幅度,即使在纵向方向上采用激励,响应能量也会从纵向运动传递到横向运动。这种由于饱和而引起的能量转移具有用于振动抑制的潜力。

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