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Determination of the Buckling Critical Load for Composite Concrete-Filled Steel Tube Columns from Partial Experimental Data: A Review of the Southwell Plot Technique

机译:从部分实验数据确定钢管混凝土组合柱的屈曲临界载荷:Southwell图解技术的回顾

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This paper discusses two techniques that target the determination of the buckling critical load for composite concrete-filled steel tube (CFT) cantilever columns from partial or incomplete experimental axial load - lateral displacement (P-A) data. The numerical techniques evaluated in this study are the secant approach (better known as the Southwell plot) and the tangent approach. The motivation of this study arises from the inability of a sophisticated laboratory system to reach the experimental peak buckling capacity of some full-scale composite CFT specimens during compression tests. The review of these two techniques is validated against an experimental dataset of CFT specimens. In addition, these two techniques are evaluated through numerical nonlinear analysis of composite CFT columns with different values of slendernesses and initial imperfections. The evaluation with both the available experimental dataset and the parametric study confirms the scope and limitations of these two techniques. The application of the secant approach allows a more accurate determination of the critical load for those composite CFT columns where the laboratory system is not capable to reach their buckling capacity.
机译:本文讨论了两种技术,这些技术的目标是根据部分或不完全的实验轴向载荷-横向位移(P-A)数据确定复合钢管混凝土(CFT)悬臂柱的屈曲临界载荷。在这项研究中评估的数值技术是割线方法(最好称为Southwell图)和切线方法。这项研究的动机来自于复杂的实验室系统无法在压缩测试中达到某些全尺寸复合CFT标本的实验峰值屈曲能力。针对CFT标本的实验数据集验证了这两种技术的回顾。此外,通过对具有不同细长度和初始缺陷值的复合CFT柱进行数值非线性分析,对这两种技术进行了评估。通过可用的实验数据集和参数研究的评估,证实了这两种技术的范围和局限性。正割方法的应用可以为实验室系统无法达到其屈曲能力的复合CFT色谱柱更准确地确定临界载荷。

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