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Non-linear forced vibrations of plates by an asymptotic-numerical method

机译:板的非线性强迫振动的渐近数值方法

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Non-linear forced vibrations of thin elastic plates have been investigated by an asymptotic-numerical method (ANM). Various types of harmonic excitation forces such as distributed and concentrated are considered. Using the harmonic balance method and Hamilton's principle, the equation of motion is converted into an operational formulation, Based on the finite element method a starting point corresponding to a non-linear solution associated to a given frequency and amplitude of excitation is computed. Applying perturbation techniques in the vicinity of this solution, the non-linear governing equation obtained is transformed into a sequence of linear problems having the same stiffness matrix. Employing one matrix inversion, a large number of terms of the perturbation series of the displacement and frequency can be easily computed with a small computation time. Iterations of this method lead to a powerful path-following technique. Comprehensive numerical tests for forced vibrations of plates subjected to time-harmonic lateral excitations are reported. (C) 2002 Published by Elsevier Science Ltd. [References: 45]
机译:薄弹性板的非线性强迫振动已通过渐近数值方法(ANM)进行了研究。考虑了各种类型的谐波激励力,例如分布的和集中的。使用谐波平衡法和汉密尔顿原理,将运动方程式转换为可操作的公式。基于有限元方法,计算出与非线性解相关的起始点,该非线性解与给定的激励频率和幅度相关。在该解决方案附近应用微扰技术,将获得的非线性控制方程式转化为具有相同刚度矩阵的一系列线性问题。利用一个矩阵求逆,可以用较少的计算时间容易地计算出位移和频率的摄动序列的大量项。此方法的迭代导致强大的路径跟踪技术。报告了受时间谐波横向激励的板的强迫振动的综合数值测试。 (C)2002由Elsevier Science Ltd.发布[参考:45]

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