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Investigation of natural frequencies of axially loaded thin-walled columns

机译:轴向受力薄壁柱固有频率研究

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The paper deals with correlation between natural frequencies of two steel thin-walled columns and the corresponding applied load. The structures are made of cold-formed lipped channel sections. The columns lengths were assumed to follow two buckling patterns – global flexural and flexural-torsional buckling. In the thicker structure two material models were considered – linearly-elastic and elastic-perfectly plastic. Numerical computations cover dynamic eigenvalue problem, linear buckling and geometrically (and materially) non-linear analysis. The correlation between squares of natural frequencies and the applied load is linear in both columns. The first natural frequencies drop to zero due to structural buckling. This method, called the Vibration Correlation Technique, allows to predict buckling loads on the basis of measured vibration frequencies of the structures. Plasticity does not affect the corresponding curves – the use of the presented technique is limited to the structures exhibiting elastic buckling behaviour.
机译:本文研究了两根钢薄壁柱的固有频率与相应的施加载荷之间的相关性。该结构由冷弯的唇形通道部分制成。假定柱长遵循两种屈曲模式–整体弯曲和弯曲扭转​​屈曲。在较厚的结构中,考虑了两种材料模型-线弹性和完全弹性的塑料。数值计算涵盖了动态特征值问题,线性屈曲以及几何(和物质)非线性分析。固有频率的平方和所施加的载荷之间的相关性在两列中都是线性的。由于结构屈曲,第一固有频率降至零。这种称为振动相关技术的方法,可以根据测得的结构振动频率来预测屈曲载荷。可塑性不影响相应的曲线-所提出的技术的使用仅限于表现出弹性屈曲行为的结构。

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