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Lateral-torsional buckling of prismatic beams with continuous top-flange bracing

机译:具有连续顶部法兰支撑的棱柱梁的横向扭转屈曲

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摘要

Continuous multi-span steel beams are common along the building and highway systems. Typical construction consists of a concrete slab supported by steel beams. The top flange of the beams is typically braced against lateral movement by the metal deck form or by the concrete slab. Design equations for lateral-torsional buckling (LTB) resistance in most specifications ignore the effect of the lateral restraint offered by the metal deck form or by the concrete slab. Finite-element method (FEM) buckling analyses of I-shaped beams were conducted. The beams were subjected to a concentrated load or uniformly distributed load at top flange along with end moments. Traditional moment gradient factors were reviewed and compared with the FEM results. New moment gradient factor for beams with continuous lateral top-flange bracing subjected to a concentrated load was developed using the results of the FEM investigation. The new equation proposed improves current design methods for the LTB problem and increase efficiency in building and bridge design.
机译:连续的多跨度钢梁在建筑和公路系统中很常见。典型的建筑包括由钢梁支撑的混凝土板。横梁的顶部法兰通常通过金属甲板形式或混凝土板支撑以防止横向移动。在大多数规范中,横向扭转屈曲(LTB)阻力的设计方程式忽略了金属甲板形式或混凝土板提供的横向约束的影响。对工字形梁进行了有限元屈曲分析。横梁在顶部法兰处承受集中荷载或均匀分布的荷载,并承受端力矩。回顾了传统的力矩梯度因子,并将其与有限元结果进行了比较。利用FEM研究的结果,为承受集中载荷的连续侧向顶部连续支撑梁建立了新的力矩梯度因子。提出的新方程式改进了针对LTB问题的当前设计方法,并提高了建筑和桥梁设计的效率。

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