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Investigation of vibration and stability of cracked columns under axial load

机译:轴向载荷作用下裂化柱的振动与稳定性研究

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摘要

In this paper, an analytical method is proposed to study the effect of crack and axial load on vibration behavior and stability of the cracked columns. Using the local flexibility model, the crack has been simulated by a torsional spring with connecting two segments of column in crack location. By solving governing eigenvalue equation, the effects of crack parameters and axial load on the natural frequencies and buckling load as well as buckling load are investigated. The results show that the presents of crack cause to reduction in natural frequencies and buckling load whereas this reduction is affected by the location and depth of the crack. Furthermore, the tensile and compressive axial load increase and decrease the natural frequencies, respectively. In addition, as the compression load approaches to certain value, the fundamental natural frequency reaches zero and instability occurs. The accuracy of the model is validated through the experimental data reported in the literature.
机译:本文提出了一种分析方法,以研究裂纹和轴向载荷对裂纹柱的振动行为和稳定性的影响。使用局部挠性模型,通过扭转弹簧模拟了裂纹,该弹簧在裂纹位置连接了两个圆柱段。通过求解控制特征值方程,研究了裂纹参数和轴向载荷对固有频率,屈曲载荷以及屈曲载荷的影响。结果表明,裂纹的存在导致固有频率和屈曲载荷的减小,而这种减小受裂纹的位置和深度的影响。此外,拉伸和压缩轴向载荷分别增大和减小固有频率。另外,当压缩负载接近一定值时,基本固有频率达到零,并且发生不稳定性。通过文献报道的实验数据验证了模型的准确性。

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