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Effective width method for distortional buckling design of cold-formed lipped channel sections

机译:冷弯唇形通道截面变形屈曲的有效宽度法

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摘要

The aim of this paper is to improve the effective width method for distortional buckling strength of cold-formed steel lipped channel members using the energy method and the large deflection theory based on nonlinear post buckling strength analysis of the partially stiffened element. The accuracy of the proposed method was verified using the finite element method. Comparison on post-distortional buckling strength is conducted between the energy method and the effective width method in the Chinese code Technical code of cold-formed thin-walled steel structures (GB50018-2002). The compared results show that the energy method is very efficient and the effective width method formula in Chinese code can be used to calculate the post-distortional buckling strength. Then, The half-wave length, elastic buckling stress of distortional buckling and the corresponding stability coefficient of partially stiffened elements are developed based on the energy method. With comparison on the calculated results of elastic buckling stress using the proposed method and the Finite Strip Method, suitability and good precision of the developed method are illuminated. Finally, a uniform formula for the stability coefficient of partially stiffened elements considering both local and distortional buckling effect is established. Comparison with experimental results and calculated results predicted with North America specification indicates that the proposed method is reasonable and has a high accuracy and reliability for the distortional buckling load carrying capacities of cold-formed lipped channel members.
机译:本文的目的是利用能量方法和基于部分加劲单元非线性后屈曲强度分析的大挠度理论,改进冷弯型钢唇形通道构件变形屈曲强度的有效宽度方法。使用有限元方法验证了该方法的准确性。比较了中国规范《冷弯薄壁钢结构技术规范》(GB50018-2002)中能量法和有效宽度法在变形后的屈曲强度。比较结果表明,能量法是非常有效的,中文代码中的有效宽度法公式可用于计算变形后屈曲强度。然后,基于能量方法,研究了半波长,畸变屈曲的弹性屈曲应力以及部分加筋元件的相应稳定系数。通过比较所提方法和有限条法的弹性屈曲应力计算结果,说明了所提方法的适用性和良好的精度。最后,建立了考虑局部屈曲效应和变形屈曲效应的局部加筋单元稳定系数的统一公式。与实验结果和北美规范预测的计算结果进行比较表明,该方法是合理的,对冷弯唇形槽形构件的变形屈曲承载能力具有较高的准确性和可靠性。

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