带波纹钢腹板的复合箱梁的挠性解耦分析方法

IF 1.1 4区 工程技术 Q3 CONSTRUCTION & BUILDING TECHNOLOGY
Mao-Ding Zhou, Yuan-Hai Zhang, Wei Ji
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引用次数: 0

摘要

现有的波形钢腹板复合材料箱梁抗弯分析方法或因未考虑影响因素而不准确,或因考虑影响因素过多而复杂。本研究提出了同时考虑腹板的手风琴效应和剪切变形以及翼缘的剪力滞后效应的复合材料箱梁挠曲位移模型。根据内力平衡条件,将复合材料箱梁的复杂挠曲模型解耦为三个独立的简单挠曲状态:满足准平面假设的欧拉-伯努利梁抗弯、腹板等效变形抗弯和翼缘剪力滞后抗弯。基于薄壁梁的屈曲理论,建立了与每种屈曲状态相对应的广义内力体系和梁型有限元模型。数值算例结果表明,所提出的方法具有较高的求解精度,可以直接得到各弯曲变形的位移和内力。力矩结果表明,广义力矩在剪切不连续点处有一个峰值,在其附近迅速增大或减小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Flexural Decoupling Analysis Method of Composite Box Girder with Corrugated Steel Webs

Flexural Decoupling Analysis Method of Composite Box Girder with Corrugated Steel Webs

The existing flexural analysis methods of corrugated steel web composite box girders are either inaccurate due to thoughtlessness of the influencing factors, or complicated due to excessive consideration of the influencing factors. In this study, a flexural displacement model of composite box girder considering both the accordion effect and shear deformation of web and the shear lag effect of flange is proposed. According to the internal force balance condition, the complex flexural models of a composite box girder are decoupled into three independent simple flexural states: Euler–Bernoulli beam flexure satisfying the quasi-plane assumption, flexure of equivalent web deformation, and flexure of shear lag of flange. Based on the flexural theory of the thin-walled beam, the generalized internal force system and beam-type finite element model was established corresponding to each flexural state. The results of numerical examples show that the proposed method has high solution accuracy and can directly obtain the displacement and internal force of each flexure deformation. The moment results show that the generalized moment has a peak value at the point of shear discontinuity, and increases or decays rapidly near it.

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来源期刊
International Journal of Steel Structures
International Journal of Steel Structures 工程技术-工程:土木
CiteScore
2.70
自引率
13.30%
发文量
122
审稿时长
12 months
期刊介绍: The International Journal of Steel Structures provides an international forum for a broad classification of technical papers in steel structural research and its applications. The journal aims to reach not only researchers, but also practicing engineers. Coverage encompasses such topics as stability, fatigue, non-linear behavior, dynamics, reliability, fire, design codes, computer-aided analysis and design, optimization, expert systems, connections, fabrications, maintenance, bridges, off-shore structures, jetties, stadiums, transmission towers, marine vessels, storage tanks, pressure vessels, aerospace, and pipelines and more.
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