首页> 外文期刊>力学学报:英文版 >PRINCIPAL RESONANCE IN TRANSVERSE NONLINEAR PARAMETRIC VIBRATION OF AN AXIALLY ACCELERATING VISCOELASTIC STRING
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PRINCIPAL RESONANCE IN TRANSVERSE NONLINEAR PARAMETRIC VIBRATION OF AN AXIALLY ACCELERATING VISCOELASTIC STRING

机译:轴向加速粘弹性弦的横向非线性参数振动中的本征共振

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摘要

To investigate the principal resonance in transverse nonlinear parametric vibration of an axially accelerating viscoelastic string, the method of multiple scales is applied directly to the nonlinear partial differential equation that governs the transverse vibration of the string. To derive the governing equation, Newton's second law, Lagrangean strain, and Kelvin's model are respectively used to account the dynamical relation, geometric nonlinearity and the viscoelasticity of the string material.Based on the solvability condition of eliminating the secular terms, closed form solutions are obtained for the amplitude and the existence conditions of nontrivial steady-state response of the principal parametric resonance. The Lyapunov linearized stability theory is employed to analyze the stability of the trivial and nontrivial solutions in the principal parametric resonance. Some numerical examples are presented to show the effects of the mean transport speed, the amplitude and the frequency of speed variation.
机译:为了研究轴向加速粘弹性弦的横向非线性参数振动的主共振,将多尺度方法直接应用于控制弦的横向振动的非线性偏微分方程。为了推导控制方程,分别使用牛顿第二定律,拉格朗日应变和开尔文模型来考虑弦材料的动力学关系,几何非线性和粘弹性。在消除世俗项的可溶性条件下,闭式解为对于主要参数共振的非平稳态响应的振幅和存在条件获得的。利用Lyapunov线性化稳定性理论来分析主参数共振中平凡和非平凡解的稳定性。给出了一些数值示例,以显示平均运输速度,速度变化的幅度和频率的影响。

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