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On complex flutter and buckling analysis of a beam structure subjected to static follower force

机译:静从动力作用下梁结构的复杂颤振和屈曲分析

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The flutter and buckling analysis of a beam structure subjected to a static follower force is completely studied in the paper. The beam is fixed in the transverse direction and constrained by a rotational spring at one end, and by a translational spring and a rotational spring at the other end. The coexistence of flutter and buckling in this beam due to the presence of the follower force is an interesting and important phenomenon. The results from this theoretical analysis will be useful for the stability design of structures in engineering applications, such as the potential of flutter control of aircrafts by smart materials. The transition-curve surface for differentiating the two distinct instability regions of the beam is first obtained with respect to the variations of the stiffness of the springs at the two ends. Second, the capacity of the follower force is derived for flutter and buckling of the beam as a function of the stiffness of the springs by observing the variation of the first two frequencies obtained from dynamic analysis of the beam. The research in the paper may be used as a benchmark for the flutter and buckling analysis of beams.
机译:本文对静力从动力作用下的梁结构的颤振和屈曲分析进行了全面的研究。梁在横向方向上固定,并在一端受到旋转弹簧的约束,在另一端受到平移弹簧和旋转弹簧的约束。由于从动力的存在,该梁中的颤振和屈曲并存是一个有趣而重要的现象。理论分析的结果对于工程应用中结构的稳定性设计很有用,例如通过智能材料对飞机进行颤振控制的潜力。首先相对于两端的弹簧刚度的变化获得用于区分梁的两个不同的不稳定性区域的过渡曲线表面。其次,通过观察从梁的动态分析获得的前两个频率的变化,得出随梁的颤动和屈曲的从动力的能力,作为弹簧刚度的函数。本文的研究可作为梁颤振和屈曲分析的基准。

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