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Local-global buckling interaction procedures for the design of cold-formed columns: Effective width and direct method integrated approach

机译:冷弯柱设计的局部-整体屈曲相互作用程序:有效宽度和直接方法集成方法

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The present paper is aimed to show recent developments addressed to steel cold-formed column members affected by local-global buckling interaction. The formulations examined are not new but based on known solutions for thin-walled cold-formed columns: the effective width method (EWM), the direct strength method (DSM) and the effective area method (EAM). All of them were previously elaborated and calibrated by different authors. The main idea is to allow integrating effective width and direct methods in the design procedures, in order to make it easier to perform the computation of the resistance of steel cold-formed columns and to offer common prescriptions for both direct and effective width methods. Further a simple and easy way to access the column resistance on the basis of direct strength method avoiding the obligation to access computational programs to find the local buckling compressive load for usual cold-formed sections is proposed. For all of this the original formulations of EAM and EWM were recalibrated with the help of experimental results previously published and the resistance partial coefficients are checked.
机译:本文旨在显示针对受局部-整体屈曲相互作用影响的钢冷弯型钢构件的最新进展。所研究的配方并不是新的,而是基于已知的薄壁冷弯柱解决方案:有效宽度法(EWM),直接强度法(DSM)和有效面积法(EAM)。所有这些以前都是由不同的作者精心设计和校准的。主要思想是允许在设计程序中集成有效宽度和直接方法,以便更轻松地进行钢冷弯柱的抗力计算,并提供直接和有效宽度方法的通用处方。进一步提出了一种基于直接强度法的简便方法,避免了访问计算程序来查找普通冷弯型材局部屈曲压缩载荷的义务。对于所有这些,在先前发表的实验结果的帮助下,重新校准了EAM和EWM的原始配方,并检查了电阻分系数。

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