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Buckling strength and ductility evaluation of thin-walled steel stiffened square box columns with uniform and graded thickness under cyclic loading

机译:循环荷载作用下均等梯度厚度薄壁加劲方箱薄壁钢管的屈曲强度和延性评估

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摘要

Thin-walled steel stiffened square box columns are becoming an increasingly attractive choice as cantilever bridge piers due to their architectural, structural and constructional advantages. This paper investigates the behavior of thin-walled steel columns with uniform square box sections (13) and newly proposed graded-thickness square box sections (GB) under constant axial and cyclic lateral loading. The analysis is carried out using a finite-element model (FEM) which takes into account the effect of both material and geometric nonlinearities. First, the accuracy of the employed FEM is verified based on the experimental results. Then, a GB column with size and volume of material equivalent to a B column is introduced. The proposed GB column is proved to have significant improvements in strength, ductility, and post-buckling behavior as compared to its counterpart B column. As a part of this research, a comprehensive parametric study is carried out to investigate the effects of main key parameters including: the width-to-thickness ratio parameter (R-f), the column slenderness ratio parameter (lambda), the magnitude of axial load (P/P-y), and the number of loading cycles (N) on the strength and ductility of the B and GB columns. Finally, a series of proposed formulae for strength and ductility evaluation of the B and GB columns is given.
机译:薄壁钢制方箱立柱由于其在结构,结构和构造方面的优势,正成为悬臂桥墩的一种越来越有吸引力的选择。本文研究了在均等轴向和周期性侧向荷载作用下,均方箱形截面(13)和新提出的渐变厚度方箱形截面(GB)的薄壁钢柱的性能。使用有限元模型(FEM)进行分析,该模型考虑了材料和几何非线性的影响。首先,根据实验结果验证了所采用有限元法的准确性。然后,引入具有与B柱等效的材料大小和体积的GB柱。事实证明,与之对应的B色谱柱相比,建议的GB色谱柱在强度,延展性和屈曲后性能方面都有显着提高。作为这项研究的一部分,我们进行了全面的参数研究,以研究主要关键参数的影响,这些主要参数包括:宽厚比参数(Rf),柱长细比参数(lambda),轴向载荷的大小(P / Py),以及加载次数(N)对B和GB色谱柱的强度和延展性的影响。最后,给出了一系列建议的B和GB柱强度和延性评估的公式。

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