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Effective flange width provisions for composite steel bridges

机译:复合钢桥的有效法兰宽度规定

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摘要

In the analysis and design of steel-concrete composite girders of a bridge, deflections, stresses, and strengths are typically obtained from elementary beam bending theory by utilizing the effective flange width concept. Shear lag effects are accounted for indirectly, by replacing the actual slab width by an appropriate reduced "effective" width. Besides the exact numerical values that can be given by numerical analysis of a bridge, it is necessary that code provisions should provide simplified practical method of evaluation of effective flange width without significant loss of accuracy. So each code implements different ideas and approaches for specifying effective flange width. Comparing them highlights distinct philosophies underlying the various effective width code formulations, which is the main objective of this paper. In this paper, the effective flange width provisions in the US, Britain, Canada, Japan, and European Committee are presented and compared. Characteristics of each provision are briefly described and summarized. Numerical comparisons for simply-supported spans and negative moment regions of continuous spans follow. The paper concludes with a summary outlining the commonalities and main differences among all these provisions.
机译:在桥梁钢-混凝土组合大梁的分析和设计中,挠度,应力和强度通常是通过使用有效翼缘宽度概念从基本梁弯曲理论获得的。通过用适当减小的“有效”宽度代替实际的板坯宽度,间接解决了剪切滞后效应。除了可以通过桥梁的数值分析得出的确切数值外,规范还必须提供简化的评估有效翼缘宽度的实用方法,而又不会显着降低精度。因此,每个代码都采用不同的思想和方法来指定有效的法兰宽度。比较它们突出了各种有效宽度代码公式背后的独特哲学,这是本文的主要目标。本文介绍并比较了美国,英国,加拿大,日本和欧洲委员会的有效法兰宽度规定。简要描述和总结了每个条款的特征。下面是对简单支撑的跨度和连续跨度的负弯矩区域的数值比较。本文最后总结了所有这些规定之间的共性和主要区别。

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