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Coupled bending and torsional vibration of nonsymmetrical axially loaded thin-walled Bernoulli-Euler beams

机译:非对称轴向薄壁贝努利-欧拉梁的弯曲和扭转振动耦合

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The dynamic transfer matrix is formulated for a straight uniform and axially loaded thin-walled Bernoulli-Euler beam element whose elastic and inertia axes are not coincident by directly solving the governing differential equations of motion of the beam element. Bernoulli-Euler beam theory is used, and the cross section of the beam does not have any symmetrical axes. The bending vibrations in two perpendicular directions are coupled with torsional vibration and the effect of warping stiffness is included. The dynamic transfer matrix method is used for calculation of exact natural frequencies and mode shapes of the nonsymmetrical thin-walled beams. Numerical results are given for a specific example of thin-walled beam under a variety of end conditions, and exact numerical solutions are tabulated for natural frequencies and solutions calculated by the other method are also tabulated for comparison. The effects of axial force and warping stiffness are also discussed. (C) 2004 Elsevier Ltd. All rights reserved.
机译:动态传递矩阵是通过直接求解梁单元运动的控制微分方程,为弹性和惯性轴不一致的直的,均匀且轴向加载的薄壁贝努利-欧拉梁单元制定的。使用了伯努利-欧拉梁理论,并且梁的横截面没有任何对称轴。沿两个垂直方向的弯曲振动与扭转振动耦合,并且包括翘曲刚度的影响。动态传递矩阵法用于计算非对称薄壁梁的精确固有频率和模态。给出了在各种端部条件下薄壁梁的具体示例的数值结果,并列出了固有频率的精确数值解,并列出了通过其他方法计算出的解以进行比较。还讨论了轴向力和翘曲刚度的影响。 (C)2004 Elsevier Ltd.保留所有权利。

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