Shear Lag and Local Buckling Interaction in Orthotropic Deck of Steel Bridges

C. Moga, Crina Feneşan, M. Suciu
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Abstract

Abstract The term of shear lag is related to the discrepancies between the approximate theory of the bending of beams and their real behaviour, and it refers to the increases of the bending stresses near the flange-to-web junctions, and the corresponding decreases in the flange stresses away from these junctions. In the case of wide flanges of plated structures, shear lag caused by shear strains, which are neglected in the conventional theory, may be taken into account by a reduced flange width concentrated along the webs of the steel girders. The effects of the shear lag, plate buckling and interaction of both effects should be taken into account at the ultimate, serviceability or fatigue limit states in the design of structures with wide flanges. In EN 1993-1-5, the concept of taking shear lag into account is based on the effectives width of the flange which is defined in order to have the same total normal force in the gross flange subjected to the real transverse stress distribution as the effective flange subjected to a uniform stress. Some aspects concerning the shear lag phenomenon and a design example of effectives width calculation and the shear lag effects for a steel pedestrian bridge deck are presented in this paper.
正交各向异性钢桥桥面剪力滞与局部屈曲相互作用
剪力滞一词是指梁的弯曲近似理论与其实际性能之间的差异,它是指在翼缘与腹板连接点附近的弯曲应力增加,而远离这些连接点的翼缘应力相应减少。在钢板结构的宽法兰情况下,传统理论中忽略的剪切应变引起的剪切滞后可以通过减小沿钢梁腹板集中的法兰宽度来考虑。在宽法兰结构的极限状态、使用极限状态和疲劳极限状态下,应考虑剪力滞、板屈曲和两者的相互作用。在en1993 -1-5中,考虑剪切滞后的概念是基于法兰的有效宽度,其定义是为了在实际横向应力分布下的总法兰中具有与承受均匀应力的有效法兰相同的总法向力。本文介绍了有关剪力滞现象的一些问题,并给出了人行钢桥面有效宽度计算和剪力滞效应的设计实例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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