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Experimental and Numerical Elastodynamic Analysis of Compressed Open Thin-Walled Beams

机译:压缩开放薄壁梁的实验性和数值弹性动力学分析

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Compressed thin-walled beams with open section are prone to torsional, or flexural-torsional, buckling. Here we present the results of several studies where, by piezoelectric pickups and a universal testing machine, we experimentally detected the natural frequencies and buckling loads of centrally compressed aluminum thin-walled beams with open cruciform section, exhibiting remarkable warping stiffness. We detected the free vibration frequencies for different values of the compressive force and for both free and (at least partially) restrained warping of the end sections. We compared the behavior of integer elements to that of analogous beams, where we introduced a localized damage, i.e., a sharp variation of a cross-section. For the integer elements, we compared the experimental results with those provided by an in-house numerical code, which investigates the elastic stability of possible non-trivial paths of thin-walled beams in a dynamic setting. The results show that, on the one hand, piezoelectric pickups can be efficiently used to extract modal parameters of structural elements; on the other hand, the numerical code proves to be robust and accurate in the determination of the buckling loads of the integer elements, in all the analyzed configurations.
机译:具有开口部分的压缩薄壁梁容易扭转或弯曲扭转弯曲。在这里,我们提出了几项研究的结果,其中通过压电拾取和通用测试机器,我们通过开放的十字形截面实验地检测到集中压缩铝薄壁梁的固有频率和屈曲负荷,表现出显着的翘曲刚度。我们检测到对压缩力的不同值的自由振动频率,以及自由和(至少部分地)限制末端部分的纵隔翘曲。我们将整数元素的行为与类似梁的行为进行了比较,在那里我们引入了局部损坏,即横截面的尖锐变化。对于整数元素,我们将实验结果与内部数值代码提供的那些进行比较,该实验结果研究了在动态设置中调查了薄壁梁的可能的非普通路径的弹性稳定性。结果表明,一方面,可以有效地利用压电拾取来提取结构元件的模态参数;另一方面,在所有分析的配置中,在确定整数元素的屈曲负载时,数值代码被证明是鲁棒和准确的。

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