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Dynamic instability of channel-section beams under periodic loading

机译:周期加载下通道截面梁的动态稳定性

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This paper presents an analytical investigation on the free vibration, static buckling and dynamic instability of channel-section beams when subjected to periodic loading. The analysis is carried out by using Bolotin's method. By assuming the instability modes, the kinetic energy and strain energy of the beam and the loss of the potential of the applied load are evaluated, from which the mass, stiffness and geometric stiffness matrices of the system are derived. These matrices are then used to carry out the analyses of free vibration, static buckling and dynamic instability of the beams. Theoretical formulae are derived for the free vibration frequency, critical buckling moment, and excitation frequency of the beam. The effects of the lateral restraint applied to the flange, the section size of the beam and the static part of the applied load on the variation of dynamic instability zones are also discussed.
机译:本文介绍了对经过周期性载荷时自由振动,静态屈曲和通道剖面梁的动态不稳定性的分析研究。 通过使用Bolotin的方法进行分析。 通过假设稳定性模式,评估光束的动能和应变能量和施加负荷的电位损失,从中导出系统的质量,刚度和几何刚度矩阵。 然后使用这些基质来执行自由振动,静电屈曲和梁的动态稳定性的分析。 为光束的自由振动频率,关键屈曲力矩和激发频率导出理论公式。 还讨论了施加到凸缘的横向限制的影响,梁的截面尺寸和施加负载的施加负载的静态部分上的动态不稳定区域的变化。

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