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Free vibration analysis of multi-span Timoshenko beams using the assumed mode method

机译:假定模态法分析大跨度提莫申科梁的自由振动

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Although some investigations on the vibration properties of multi-span beams have been conducted, studies on multi-span Timoshenko beams by using the assumed mode method have been relatively few. In this paper, the multi-span Timoshenko beams are investigated, and the mode shapes of the beams are modified by the interpolation functions to model the vibration modes of the multi-span beams. Hamilton's principle is applied to establish the equation of motion of the structure, and the natural circular frequencies and the free vibration responses of the multi-span beams are obtained. The numerical results demonstrate good agreement between the present results and those from the open literature and the ANSYS software. The influences of the length-thickness ratio, the disorder degree and the span number on the free vibration of the structure are also analyzed. It is observed that the displacement amplitude and the vibration period at the midpoint of the three-span Timoshenko beams are reduced when the disorder degree and the length-thickness ratio are reduced. The increase in the span number of the multi-span beams with equal spans leads to the decrease in the displacement amplitude and the period of the structures. Furthermore, some interesting phenomena are found, e.g., the same even-order frequencies of different three-span beams are equal under specific disorder degree.
机译:尽管已经对多跨梁的振动特性进行了一些研究,但是使用假定模态方法对多跨蒂莫申科梁的研究相对较少。本文研究了多跨Timoshenko梁,并通过插值函数修改了梁的振型,以模拟多跨梁的振动模式。应用汉密尔顿原理建立结构的运动方程,得到了自然跨度和多跨梁的自由振动响应。数值结果表明,目前的结果与开放文献和ANSYS软件的结果吻合良好。分析了长厚比,无序度和跨度数对结构自由振动的影响。观察到,当减小无序度和长度-厚度比时,三跨度Timoshenko梁的中点处的位移幅度和振动周期减小。具有相等跨度的多跨度梁的跨度数的增加导致结构的位移幅度和周期的减小。此外,发现了一些有趣的现象,例如,在特定的无序度下,不同三跨光束的相同偶数频率相等。

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