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On the Flexural-Torsional Vibration and Stability of Beams Subjected to Axial Load and End Moment

机译:轴力和端矩作用下梁的弯曲扭转振动和稳定性

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摘要

The free vibration of beams, subjected to a constant axial load and end moment and various boundary conditions, is examined. Based on the Euler-Bernoulli bending and St. Venant torsion beam theories, the differential equations governing coupled flexural-torsional vibrations and stability of a uniform, slender, isotropic, homogeneous, and linearly elastic beam, undergoing linear harmonic vibration, are first reviewed. The existing formulations are then briefly discussed and a conventional finite element method (FEM) is developed. Exploiting the MATLAB-based code, the resulting linear Eigenvalue problem is then solved to determine the Eigensolutions (i.e., natural frequencies and modes) of illustrative examples, exhibiting geometric bending-torsion coupling. Various classical boundary conditions are considered and the FEM frequency results are validated against those obtained from a commercial software (ANSYS) and the data available in the literature. Tensile axial force is found to increase natural frequencies, indicating beam stiffening. However, when a force and an end moment are acting in combination, the moment reduces the stiffness of the beam and the stiffness of the beam is found to be more sensitive to the changes in the magnitude of the axial force compared to the moment. A buckling analysis of the beam is also carried out to determine the critical buckling end moment and axial compressive force.
机译:研究了在恒定轴向载荷和端力矩以及各种边界条件下梁的自由振动。基于Euler-Bernoulli弯曲和St.Venant扭转梁理论,首先研究了控制耦合弯曲扭转振动和均匀,细长,各向同性,均质和线性弹性梁经历线性谐波振动的稳定性的微分方程。然后简要讨论了现有的公式,并开发了常规的有限元方法(FEM)。利用基于MATLAB的代码,然后解决所得的线性特征值问题,以确定示例性示例的特征解(即固有频率和众数),表现出几何弯曲-扭转耦合。考虑了各种经典边界条件,并根据从商业软件(ANSYS)获得的结果和文献中提供的数据验证了FEM频率结果。发现拉伸轴向力会增加固有频率,表明梁刚度。然而,当力和结束力矩共同作用时,力矩降低了梁的刚度,并且发现梁的刚度与轴向力矩相比,对轴向力的大小变化更敏感。还对梁进行屈曲分析,以确定临界屈曲结束力矩和轴向压缩力。

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