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Local buckling strength and design of cold-formed steel beams with slotted perforations

机译:局部屈曲强度和具有开槽穿孔的冷成型钢梁设计

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Providing staggered slotted perforations to the Cold-Formed Steel (CFS) beams is a new approach being used in light gauge steel construction aiming to enhance both the fire and energy performances. However, slots in the web reduce the load-bearing capacity of CFS beams and existing studies do not provide a definite evaluation of the design expressions to determine the structural performance of slotted perforated CFS flexural members. Therefore, the present study aims to establish a methodology to determine the flexural capacity of staggered slotted perforated CFS beams subject to local buckling through developing three-dimensional Finite Element (FE) models. The developed FE models were subjected to validation against the related test data. Subsequently, the validated FE model was employed to conduct further parametric studies (432 FE models). Parameters include the dimensions of the CFS beams and staggered slotted perforations, rows and row groups of slots and yield strength. The effect of these factors on the local buckling capacity of the staggered slotted perforated CFS beams under bending is discussed. The paper concludes with a proposal of Direct Strength Method (DSM) based new design equations to predict the bending capacity of the CFS beams with staggered slotted perforations subject to local buckling and to enhance their commercial aspects.
机译:向冷成型钢(CFS)梁提供交错的开槽穿孔是一种新的方法,用于轻型钢结构,旨在增强火力和能量性能。然而,Web中的槽降低了CFS光束的承载能力,并且现有的研究不能提供对设计表达的明确评估,以确定开槽穿孔CFS弯曲构件的结构性能。因此,本研究旨在通过开发三维有限元(Fe)模型来确定通过局部屈曲而确定交错的开槽穿孔CFS梁的弯曲能力。开发的FE模型对相关测试数据进行了验证。随后,采用经过验证的FE模型进行进一步的参数研究(432 FE模型)。参数包括CFS光束的尺寸和交错的开槽穿孔,行和行槽组和屈服强度。讨论了这些因素对弯曲下交错的开槽穿孔CFS梁的局部屈曲容量的影响。本文的结论是基于直接强度法(DSM)的新设计方程的提议,以预测CFS梁的弯曲能力与局部屈曲,并提高其商业方面。

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