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A consistent methodology for the out-of-plane buckling resistance of prismatic steel beam-columns

机译:棱柱形钢梁柱面外屈曲阻力的一致方法

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This paper presents a design proposal for the out-of-plane budding resistance of prismatic beam-columns subject to axial compression and uniaxial major-axis bending that was developed based on the well-known Ayrton-Perry format. Firstly, the relevant theoretical background is summarized, closely following the theoretical derivation performed by Szalai and Papp (2010). Secondly, the required transformations for the engineering application of the design procedure are detailed and extended to arbitrary bending moment distributions. Appropriate generalized initial imperfection factors for the out-of-plane buckling of beam-columns are defined so as to achieving complete consistency across the stability verifications for columns, beams and beam-columns. The proposed procedure is subsequently validated against a large set of advanced numerical simulations. A good agreement was found between the numerical results and the estimates provided by the proposed design procedure, both in terms of the overall trend and the specific quantitative results. Based on a statistical assessment, the comparison with the interaction expression of Eurocode 3 (2005) (method 2) showed that this proposal slightly outperforms the Eurocode procedure, both in terms of average values and dispersion of results. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了基于著名的Ayrton-Perry格式开发的受轴向压缩和单轴主轴弯曲的棱形梁柱的面外出芽阻力的设计建议。首先,紧紧遵循Szalai和Papp(2010)进行的理论推导总结了相关的理论背景。其次,详细介绍了设计过程的工程应用所需的转换,并将其扩展到任意弯矩分布。定义了梁柱平面外屈曲的适当的广义初始缺陷因子,以便在对柱,梁和梁柱进行稳定性验证时获得完全的一致性。随后针对大量高级数值模拟对提出的程序进行了验证。无论是从总体趋势还是从具体的定量结果来看,数值结果与拟议设计程序提供的估计值之间都找到了很好的一致性。根据统计评估结果,与Eurocode 3(2005)(方法2)的交互表达方式进行比较,结果表明,该提案在平均值和结果分散性方面均优于Eurocode程序。 (C)2016 Elsevier Ltd.保留所有权利。

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