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Lateral stiffness of steel bridge I-girders braced by metal deck forms

机译:钢桥工字钢的横向刚度用金属甲板形式支撑

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摘要

The lateral-torsional buckling capacity of steel bridge girders is often increased by incorporating bracing along the girder length. Permanent metal deck forms (PMDF) that are used to support the wet concrete deck during bridge construction are a likely source of stability bracing; however, their bracing performance is greatly limited by flexibility in the connections currently used with the formwork. This paper outlines results from a research study that assessed and improved the bracing potential of metal deck forms used in bridge applications. The research study included shear tests of PMDF panels, and also lateral displacement and buckling tests of twin girder systems braced with PMDF. This paper will provide key results from the shear panel tests and then focus on the lateral displacement tests. Parametric investigations of PMDF bracing behavior were conducted using finite-element analyses and the results from the lateral displacement tests served a critical role in calibrating the finite element models. This paper documents key results from lateral load tests of 17 girder-PMDF systems using a variety of bracing details and PMDF thickness values. © 2009 ASCE
机译:钢桥大梁的横向扭转屈曲能力通常通过沿大梁长度引入支撑来提高。在桥梁施工期间用于支撑湿混凝土甲板的永久金属甲板模板(PMDF)可能是稳定支撑的来源。但是,它们的支撑性能受到模板当前使用的连接灵活性的极大限制。本文概述了一项研究研究的结果,该研究评估并提高了桥梁应用中使用的金属甲板模板的支撑潜力。该研究包括PMDF面板的抗剪测试,以及支撑PMDF的双箱梁系统的横向位移和屈曲测试。本文将提供剪力板测试的关键结果,然后重点介绍横向位移测试。使用有限元分析对PMDF支撑行为进行了参数研究,横向位移测试的结果在校准有限元模型中起着至关重要的作用。本文记录了使用各种支撑细节和PMDF厚度值对17个大梁PMDF系统进行侧向载荷测试的关键结果。 ©2009 ASCE

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