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Distortional buckling of I-steel concrete composite beams in negative moment area

机译:工字钢混凝土组合梁在负弯矩区域的变形屈曲

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The predominant type of buckling that I-steel concrete composite beams experience in the negative moment area is distortional buckling. The key factors that affect distortional buckling are the torsional and lateral restraints by the bottom flange. This study thoroughly investigates the equivalent lateral and torsional restraint stiffnesses of the bottom flange of an I-steel concrete composite beam under negative moments. The results show a coupling effect between the applied forces and the lateral and torsional restraint stiffnesses of the bottom flange. A formula is proposed to calculate the critical buckling stress of the I-steel concrete composite beams under negative moments by considering the lateral and torsional restraint stiffnesses of the bottom flange. The proposed method is shown to better predict the critical bending moment of the I-steel composite beams. This article introduces an improved method to calculate the elastic foundation beams, which takes into account the lateral and torsional restraint stiffnesses of the bottom flange and considers the coupling effect between them. The results show a close match in results from the calculation method proposed in this paper and the ANSYS finite element method, which validates the proposed calculation method. The proposed calculation method provides a theoretical basis for further research on distortional buckling and the ultimate resistance of I-steel concrete composite beams under a variable axial force.
机译:工字钢混凝土组合梁在负弯矩区域所经历的屈曲的主要类型是变形屈曲。影响变形屈曲的关键因素是底部法兰的扭转和横向约束。这项研究彻底研究了在负弯矩作用下工字钢混凝土组合梁底部法兰的等效侧向和扭转约束刚度。结果显示了作用力与底部法兰的横向和扭转约束刚度之间的耦合效应。提出了一种计算公式,通过考虑底部翼缘的侧向和扭转约束刚度,来计算工字钢混凝土组合梁在负弯矩下的临界屈曲应力。结果表明,所提出的方法可以更好地预测工字钢组合梁的临界弯矩。本文介绍了一种改进的计算弹性基础梁的方法,该方法考虑了底部法兰的横向和扭转约束刚度,并考虑了它们之间的耦合效应。结果表明,本文提出的计算方法与ANSYS有限元方法的结果非常吻合,这验证了所提出的计算方法。所提出的计算方法为进一步研究工字钢混凝土组合梁在可变轴向力下的变形屈曲和极限抗力提供了理论依据。

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