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首页> 外文期刊>Journal of Constructional Steel Research >Buckling resistance of steel H-section beam-columns: In-plane buckling resistance
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Buckling resistance of steel H-section beam-columns: In-plane buckling resistance

机译:钢H型梁柱屈曲电阻:面内屈曲阻力

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Buckling resistance predictions resulting from flexural and flexural-torsional buckling of double tee section members subjected to compression and bending are considered. A novel analytical model is developed for establishing design criteria based on decomposition of the member buckling behaviour into in-plane and out-of-plane resistance. The former is based on second-order bending relationships of load effects of structural members with in-plane equivalent imperfections, while the latter is based on the stability theory of thin-walled open sections. First part of this study presents an analytical formulation of the in-plane buckling resistance of beam-columns. In this regard, further decomposition is postulated for the in-plane first-order bending moment diagram that results in the loading state to be the superposition of two components. The first component is related to symmetrical loading and the second to antisymmetric loading. To consider the second-order effects, prebuckling displacements generated by the abovementioned loading components are amplified with regard to the inversion of the residuum of the buckling force utilisation ratio in order to obtain approximate values of second-order displacements and internal moments. As a result, the in-plane interaction curve, expressed in dimensionless coordinates, that describes the beam-column in-plane flexural buckling resistance without considering lateral-torsional buckling effects, is obtained. The results of nonlinear finite element simulations are used for the verification of the developed analytical formulation. It is concluded that this proposal yields less conservative predictions than those based on the interaction relationships of clause 6.3.3 of Eurocode 3, Part 1-1. (C) 2019 Elsevier Ltd. All rights reserved.
机译:考虑了由经过压缩和弯曲的双T型部分构件的弯曲和弯曲扭转​​屈曲产生的屈曲阻力预测。开发了一种新的分析模型,用于建立设计标准,基于成员屈曲行为的分解成平面内和面外阻力。前者基于结构构件与面内等效缺陷的载荷效应的二阶弯曲关系,而后者基于薄壁开口部分的稳定性理论。本研究的第一部分提出了梁柱的平面内屈曲电阻的分析制剂。在这方面,进一步分解被假设用于面内的一阶弯矩图,导致加载状态是两个组件的叠加。第一组分与对称负载和第二个组件有关,第二组分与反对称负载有关。为了考虑二阶效应,通过上述加载分量产生的预定位移是关于屈曲力利用率的残留的反转而扩增,以获得二阶位移和内部时刻的近似值。结果,在不考虑横向扭转屈曲效应的情况下,以无量纲坐标表示的平面内相互作用曲线,其描述了在不考虑横向扭转屈曲效应的情况下的梁柱内弯曲屈曲电阻。非线性有限元模拟的结果用于验证显影的分析制剂。得出结论,该提案比基于欧元建3.3.3分,第1-1部分的第6.3.3节第6.3.3条的互动关系产生的保守预测较少。 (c)2019 Elsevier Ltd.保留所有权利。

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