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首页> 外文期刊>Journal of Constructional Steel Research >Testing, modelling and design of normal and high strength steel tubular beam-columns
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Testing, modelling and design of normal and high strength steel tubular beam-columns

机译:正常高强度钢管梁柱的测试,建模与设计

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The influence of yield strength on the in-plane stability and design of structural steel square and rectangular hollow section (SHS and RHS) beam-columns under compression plus uniform bending is investigated in this study. Ten buckling tests were carried out on hot-finished S690 SHS 100 & times;100 & times;4 (in mm) specimens under combined compression plus uniaxial bending. Finite element (FE) models of SHS and RHS beam-columns were established, validated and employed to perform parametric studies, where supplementary buckling resistance data were numerically derived. Through comparisons with the test and FE data, shortcomings of the current EC3 beam column interaction curves were revealed, particularly in the higher yield strength domain. A modified EC3 approach was developed accordingly, featuring more accurate compression end points and re-calibrated interaction factors, and was shown to significantly improve the design accuracy and consistency for both hot-finished and cold-formed SHS and RHS beam-columns over a wide spectrum of steel grades. Subsequent reliability analysis confirmed the applicability of the current EC3 partial safety factor to the proposed modified EC3 design approach.(c) 2021 Elsevier Ltd. All rights reserved.
机译:本研究研究了在压缩加上均匀弯曲下结构钢正方形和矩形中空部分(SHS和RHS和RHS)梁柱的平面内稳定性和设计的影响。在热完成的S690 SHS 100和时间下进行10个屈曲测试; 100和时; 4(MM)在组合压缩加上单轴弯曲的标本。建立,验证和用于执行参数研究的SHS和RHS梁柱的有限元(FE)型号,其中进行数值衍生辅助屈曲阻力数据。通过对测试和FE数据的比较,揭示了当前EC3束柱相互作用曲线的缺点,特别是在较高的屈服强度结构域中。相应地开发了一种改进的EC3方法,具有更精确的压缩端点和重新校准的相互作用因子,并且被证明可以显着提高热成品和冷成型SHS和RHS梁柱的设计精度和一致性钢谱谱。随后的可靠性分析证实了当前EC3部分安全因子对所提出的修改EC3设计方法的适用性。(c)2021 Elsevier Ltd.保留所有权利。

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