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Experimental and numerical evaluation of inelastic lateral-torsional buckling of Ⅰ-section cantilevers

机译:Ⅰ-段悬臂的非弹性横向扭转试验和数值评价

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摘要

A primary failure mode for thin-walled steel members is lateral-torsional buckling (LIB), in which steel cantilever beams experience nonuniform twisting and buckling about their weak axes. Analytical and numerical studies related to the elastic LTB of cantilevers abound. However, comprehensive analytical and experimental studies focusing on the inelastic L713 behaviour of cantilevers are rare. Therefore, this study intends to establish a numerical procedure verified with experimental results to evaluate the inelastic LTB strength of steel cantilevers with an I-section. First, an experimental study was performed, in which nine steel cantilever beams with different slenderness and load-height levels were tested. Load-displacement behaviours of steel cantilevers were investigated by measuring lateral and vertical displacements and rotations under the effect of a monotonic end-point load. Subsequently, a two-step numerical procedure is introduced. The elastic LTB loads and the related mode-shapes were determined in the first step, and the nonlinear load-deflection behaviours were evaluated in the second step based on the Riks method. Finally, numerical and experimental results were compared, thereby demonstrating that the presented numerical analysis can be used for predicting the buckling loads, vertical displacements, and torsional rotations at an acceptable level in the design stage. (C) 2020 Elsevier Ltd. All rights reserved.
机译:薄壁钢构件的初级故障模式是横向扭转(Lib),其中钢悬臂梁横梁经历绕其弱轴的不均匀扭曲和弯曲。与悬臂的弹性LTB有关的分析和数值研究比比皆是。然而,专注于悬臂的非弹性L713行为的综合分析和实验研究是罕见的。因此,本研究打算建立一种用实验结果验证的数值程序,以评估钢悬臂与I段的无弹性LTB强度。首先,进行实验研究,其中测试了九个具有不同细长和负载高度水平的九个钢悬臂梁。通过测量单调终点载荷的效果,通过测量横向和垂直位移和旋转来研究钢悬臂的负荷行为。随后,引入了两步数程过程。在第一步中确定弹性LTB负载和相关模式形状,并且在基于RIKS方法的第二步骤中评估非线性载荷偏转行为。最后,比较了数值和实验结果,从而证明所呈现的数值分析可用于预测设计阶段中可接受的水平的屈曲负载,垂直位移和扭转旋转。 (c)2020 elestvier有限公司保留所有权利。

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