The Effect of Hole Width on Full Height Rectangular Opening Castellated Steel Beam with Diagonal Stiffener Concerning Its Flexural Capacity

A. M. Rusli, P. Setiyawan, Dessy Maimunah, Destia Wulandari
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引用次数: 3

Abstract

The use of a diagonal stiffener in a full height rectangular opening castellated steel beam can prevent the failure mechanism of vierendeel. This results in the flexural capacity of the castellated beam higher than the original IWF profile. The flexural capacity of a castellated steel beam can be optimized by designing the hole width on the web section. This research aims to find out the effect of several values of castellated steel beam hole width on the flexural capacity. In this research, there are 4 castellated steel beam models whose flexural capacity values are calculated using the truss analysis and pushover analysis methods. Based on the calculation results, it can be concluded that the smaller the value of the hole width, the greater the flexural capacity of the castellated steel beam will be. The largest increase in flexural capacity from the original IWF to the castellated beam is 140.93%.
孔宽对斜加劲全高矩形开口箱梁抗弯性能的影响
对角加劲肋在全高矩形开孔槽形钢梁中的应用,可以有效地防止竖向钢筋的破坏机制。这导致城堡梁的抗弯能力高于原来的IWF剖面。通过腹板孔宽度的设计,可以优化城形钢梁的抗弯承载力。本研究的目的是找出不同孔洞宽度值对连铸钢梁抗弯承载力的影响。在本研究中,采用桁架分析和推覆分析方法计算了4种城堡式钢梁模型的抗弯承载力值。计算结果表明,孔宽值越小,槽形钢梁的抗弯承载力越大。由原IWF到castellated梁的最大抗弯承载力增加了140.93%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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