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The Collapse Analysis of the Lateral-Torsional Buckling of I-Shaped Stepped Steel Beams

机译:I形阶梯式钢梁横向扭转折叠塌陷分析

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摘要

The use of a non-prismatic member such as a stepped beam as a design method has the ability to function as a tool for steel beams optimization. A cover plate is partially welded on the upper and lower flange of the member at the maximum bending moment location to increase its flexural strength and, under critical load, flexural members bend about its strong axis, displace to the lateral direction, and twist coincidentally through a phenomenon known as the Lateral-Torsional Buckling (LTB). There is, however, no equations in the AISC 360-16 specification to calculate the critical moment of a stepped beam (Mst). Therefore, this research focuses on developing Mst for a simply supported stepped beam which deforms on its shear center under static-transverse loading through the use of a collapse analysis and the behavior of the beam. The results showed the welded cover plates consequently increased the LTB resistance of the prismatic I-shaped steel beam from 9.8% to 202% while the critical moment increased more significantly with an increment in the ratio of the cover plate length to the unbraced length (α). The cover plate thickness was observed to have dominantly affected only a large α ratio while the post-buckling characteristic of large α showed a sudden collapse phenomenon. Furthermore, the LTB modification factor was generated in this study due to the initial geometrical imperfection from the first mode of Eigen shape with maximum amplitude Lb/2000 (Cb1) and stepped beam shape (Cst) which were required to estimate the critical moment of a stepped beam based on the AISC equation for a prismatic beam.
机译:使用诸如阶梯式光束的非棱柱形构件作为设计方法的能力能够作为钢束优化的工具。盖板在构件的最大弯矩位置部分地焊接在构件的上下凸缘上,以提高其弯曲强度,并且在临界负载下,弯曲构件围绕其强轴线弯曲,使横向移动,并巧合通过扭转一种称为横向扭转屈曲(LTB)的现象。然而,AISC 360-16规范中没有方程式,以计算阶梯式光束(MST)的关键时刻。因此,本研究侧重于开发用于简单支撑的阶梯式梁的MST,其通过使用塌陷分析和光束的行为在静态横向负载下在其剪切中心变形。结果表明,焊接盖板因此增加了棱镜I形钢梁的LTB电阻从9.8%到202%,而关键时刻在盖板长度与横向长度的比率中增加更显着增加(α )。观察到盖板厚度在显着影响大的α比,而大α的后屈曲特性显示出突然的坍塌现象。此外,由于来自具有最大幅度LB / 2000(CB1)和阶梯式梁形状(CST)的初始几何缺陷,在该研究中产生了LTB修改因子,并且估计了阶梯式梁形状(CST)。基于棱镜光束AISC方程的阶梯束。

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