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EFFECT OF WEIGHT ON THE EXPERIMENTAL MODAL ANALYSIS OF SLENDER CANTILEVER BEAMS

机译:重量对悬臂梁实验模态分析的影响

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It is relatively well known that axial loads tend to influence lateral stiffness and hence natural frequencies of slender structural components. Tensile forces tend to increase the lateral stiffness and compressive forces tend to reduce lateral stiffness, bringing with it the possibility of buckling. In many practical situations this is a negligible effect. But for very slender structures it can be important, including the effect of self-weight. This paper will focus attention on a form of double cantilever beam system, I.e., two cantilevers sharing a common hub. A differential axial load can be applied to this system via orientation in a gravitational field. We shall neglect the effect of gravity when the beams are in their horizontal orientation from a limited theoretical standpoint. It is of course present in the experiments but the cantilevers are much stiffer in one direction than the other, and the beams are clamped with their stiffer resistance in the vertical direction. The focus of the current paper is on the natural frequencies and mode shapes of a two-beam system from an experimental modal analysis perspective.
机译:众所周知,轴向载荷往往会影响横向刚度,从而影响细长结构部件的固有频率。拉伸力倾向于增加横向刚度,而压缩力倾向于降低横向刚度,从而具有屈曲的可能性。在许多实际情况下,这是可以忽略不计的效果。但是对于非常细长的结构,这可能很重要,包括自重的影响。本文将重点关注一种形式的双悬臂梁系统,即两个悬臂共享一个公共枢纽。可以通过重力场中的方向将不同的轴向载荷施加到该系统。从有限的理论角度来看,当梁处于水平方向时,我们将忽略重力的影响。它当然存在于实验中,但是悬臂在一个方向上比另一个方向上要硬得多,并且梁在垂直方向上以更坚硬的阻力被夹紧。从实验模态分析的角度来看,本文的重点是两束系统的固有频率和模态。

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