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Multiple-mode nonlinear free and forced vibrations of beams using finite element method

机译:梁的多模非线性自由振动和强迫振动的有限元方法

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摘要

Multiple-mode nonlinear free and forced vibration of a beam is analyzed by the finite element method. The geometric nonlinearity is investigated. Inplane displacement and inertia (IDI) are also considered in the formulation. Harmonic force matrix is derived and explained. Nonlinear free vibration can be simply treated as a special case of the general forced vibration by setting the harmonic force matrix equal to zero. The effect of the higher modes is more pronouced for the clamped supported beam than the simply supported one. Beams without IDI yield more effect of the higher modes than the one with IDI. The effects of IDI are to reduce nonlinearity. For beams with end supports restrained from axial movement (immovable cases), only the hardening type nonlinearity is observed. However, beams of small slenderness ratio (L/R = 20) with movable end supports, the softening type nonlinearity is found. The concentrated force case yields a more severe response than the uniformly distributed force case. Finite element results are in good agreement with the solution of simple elliptic response, harmonic balance method, and Runge-Kutte method and experiment.
机译:通过有限元方法分析了梁的多模非线性自由振动和强迫振动。研究了几何非线性。公式中还考虑了面内位移和惯性(IDI)。导出并解释了谐波力矩阵。通过将谐波力矩阵设为零,可以将非线性自由振动简单地视为一般强制振动的特例。相比于简单支撑的梁,较高模态的作用对夹紧的支撑梁更为突出。没有IDI的光束比具有IDI的光束对更高模的影响更大。 IDI的作用是减少非线性。对于带有受轴向运动限制的端部支撑的梁(不动的情况),仅观察到硬化型非线性。但是,对于细长的比率(L / R = 20)的小梁,带有可移动的端部支撑,则会发现软化类型的非线性。集中力情况比均匀分布力情况产生更严重的响应。有限元结果与简单的椭圆响应,谐波平衡法以及Runge-Kutte方法和实验的解决方案非常吻合。

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