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Dqm Large Amplitude Vibration Of Composite Beams On Nonlinear Elastic Foundations With Restrained Edges

机译:约束边的非线性弹性地基上复合梁的Dqm大振幅振动

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This paper presents an efficient and accurate differential quadrature (DQ) large amplitude free vibration analysis of laminated composite thin beams on nonlinear elastic foundation. Beams under consideration have elastically restrained against rotation and in-plane immovable edges. Elastic foundation has cubic nonlinearity with shearing layer. We impose the boundary conditions directly into the governing equations in spite of the conventional DQ method and without any extra efforts. A direct iterative method is used to solve the nonlinear eigenvalue system of equations after transforming the governing equations into the frequency domain. The fast rate of convergence of the method is shown and their accuracy is demonstrated by comparing the results with those for limit cases, i.e. beams with classical boundary conditions, available in the literature. Besides, we develop a finite element program to verify the results of the presented DQ approach and to show its high computational efficiency. The effects of different parameters on the ratio of nonlinear to linear natural frequency of beams are studied.
机译:本文提出了一种在非线性弹性地基上的叠层复合薄梁的有效且精确的微分正交(DQ)大振幅自由振动分析。所考虑的光束具有弹性,可防止旋转和平面内固定边缘。弹性地基具有剪切层的立方非线性。尽管采用了传统的DQ方法,我们仍将边界条件直接施加到控制方程中,而无需任何额外的努力。将控制方程式转换到频域后,使用直接迭代法求解方程式的非线性特征值系统。通过将结果与极限情况下的结果(即具有经典边界条件的梁)进行比较,可以显示该方法的快速收敛速度,并证明了其准确性。此外,我们开发了一个有限元程序来验证提出的DQ方法的结果并显示其高计算效率。研究了不同参数对梁非线性固有频率与线性固有频率之比的影响。

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