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On triply coupled vibration of eccentrically loaded thin-walled beam using dynamic stiffness matrix method

机译:动态刚度矩阵法研究偏心加载薄壁梁的三重耦合振动

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摘要

The effect of central axial load on natural frequencies of various thin-walled beams, are investigated by some researchers using different methods such as finite element, transfer matrix and dynamic stiffness matrix methods. However, there are situations that the load will be off centre. This type of loading is called eccentric load. The effect of the eccentricity of axial load on the natural frequencies of asymmetric thin-walled beams is a subject that has not been investigated so far. In this paper, the mentioned effect is studied using exact dynamic stiffness matrix method. Flexure and torsion of the aforesaid thin walled beam is based on the Bernoulli-Euler and Vlasov theories, respectively. Therefore, the intended thin-walled beam has flexural rigidity, saint-venant torsional rigidity and warping rigidity. In this paper, the Hamilton's principle is used for deriving governing partial differential equations of motion and force boundary conditions. Throughout the process, the uniform distribution of mass in the member is accounted for exactly and thus necessitates the solution of a transcendental eigenvalue problem. This is accomplished using the Wittrick-Williams algorithm. Finally, in order to verify the accuracy of the presented theory, the numerical solutions are given and compared with the results that are available in the literature and finite element solutions using ABAQUS software.
机译:一些研究人员使用有限元法,传递矩阵法和动态刚度矩阵法等方法研究了中心轴向载荷对各种薄壁梁固有频率的影响。但是,在某些情况下,负载可能会偏离中心。这种载荷称为偏心载荷。轴向载荷的偏心距对不对称薄壁梁固有频率的影响是迄今为止尚未研究的课题。在本文中,使用精确动态刚度矩阵方法研究了上述效果。前述薄壁梁的挠曲和扭转分别基于伯努利-欧拉理论和弗拉索夫理论。因此,预期的薄壁梁具有抗弯刚度,圣文特抗扭刚度和翘曲刚度。在本文中,汉密尔顿原理用于推导运动和力边界条件的支配偏微分方程。在整个过程中,精确地考虑了成员中质量的均匀分布,因此有必要解决先验特征值问题。这是使用Wittrick-Williams算法完成的。最后,为了验证所提出理论的准确性,给出了数值解并将其与文献中的结果以及使用ABAQUS软件的有限元解进行了比较。

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