冷弯槽体受压弹性临界扭曲屈曲强度与行为

IF 0.8 0 ARCHITECTURE
Kazuya Mitsui, Kikuo Ikarashi, Tomoki Kobashi, Ryohei Kuwada
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引用次数: 0

摘要

槽形构件的扭曲屈曲是薄壁构件组成的钢结构的关键因素;然而,现有的模型在准确预测这种行为方面存在局限性。本文采用能量法分析了通道构件的扭曲屈曲行为。引入了一种非常规的力学模型和位移函数来模拟扭曲屈曲行为,突出了传统模型的局限性。利用所提出的力学模型,推导出了直接反映通道构件几何参数的弹性扭曲屈曲强度的计算公式。此外,还建立了设计方程。提出的评估公式和简化的设计方程能够精确地确定弹性临界扭曲屈曲强度,包括由腹板局部屈曲引起的扭曲屈曲,这是以前的评估公式无法解决的。这些方法可以连续评估通道构件的扭曲屈曲。通过有限元分析结果验证了所提公式和设计方程的可靠性和有效性。与传统方法相比,所开发的模型和方程在预测通道构件扭曲屈曲方面具有更高的准确性,证明了它们在各种条件下的可靠性和适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Strength and Behavior of Elastic Critical Distortional Buckling for Cold-Formed Channel Member Under Compression

Strength and Behavior of Elastic Critical Distortional Buckling for Cold-Formed Channel Member Under Compression

Distortional buckling of channel members is a critical factor in steel structures composed of thin-walled members; however, existing models have limitations in accurately predicting this behavior. This study analyzes the distortional buckling behavior of channel members using an energy method. A nonconventional mechanical model and displacement functions are introduced to simulate distortional buckling behavior, highlighting the limitations of conventional models. An evaluation formula for the elastic distortional buckling strength is derived, directly reflecting the geometrical parameters of the channel member using the proposed mechanical model. Additionally, a design equation is formulated. The proposed evaluation formula and simplified design equation enable the precise determination of the elastic critical distortional buckling strength, including cases where distortional buckling is initiated by local buckling of the web, which previous evaluation formulas could not address. These methods enable continuous evaluation of distortional buckling in channel members. The proposed formula and design equation were verified against finite element analysis results, confirming their reliability and effectiveness. The developed model and equations offer improved accuracy over conventional approaches for predicting distortional buckling in channel members, demonstrating their reliability and applicability under diverse conditions.

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来源期刊
CiteScore
1.20
自引率
11.10%
发文量
58
审稿时长
15 weeks
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