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Lateral torsional buckling analysis of moment resisting plane frames

机译:抗弯平面框架的侧向扭转屈曲分析

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摘要

A finite element formulation is developed to predict the lateral torsional buckling resistance of plane frames with moment connections. The solution focuses on the simple characterization the elastic warping behavior of moment connections in a manner that allows them to interface seamlessly with existing beam buckling finite elements, thus providing means for realistically modelling the lateral torsional buckling of plane frames. Special attention is devoted to the joint rotation effects. The technique successfully captures the interaction between beams and columns of frames, an effect that is neglected in present design methodologies based on individual member checks. The solution is shown to provide lateral torsional buckling resistance predictions in very good agreement with shell based finite element solutions at a fraction of the modelling and computational effort. For typical frames that are laterally supported at the joints, the study suggests that present design methodologies that isolate the member from the rest of the structure provide conservative buckling resistance predictions. Conversely, for frames with no lateral restraints at some of the joints, the present solution predicts lateral torsional buckling resistances that are significantly different from those based on design standard equations, suggesting the need to account for interaction effects in such situations.
机译:开发了有限元公式来预测具有弯矩连接的平面框架的横向扭转屈曲阻力。该解决方案侧重于以简单的方式表征弯矩连接的弹性翘曲行为,以使其能够与现有的梁屈曲有限元无缝对接,从而为实际模拟平面框架的横向扭转屈曲提供了手段。特别注意关节旋转效果。该技术成功地捕获了梁和框架柱之间的相互作用,这种效果在当前基于单个成员检查的设计方法中被忽略了。该解决方案在建模和计算工作的一小部分中就可以提供与基于壳的有限元解决方案非常一致的横向扭转屈曲阻力预测。对于在关节处侧向支撑的典型框架,研究表明,将构件与结构其余部分隔离开的当前设计方法可提供保守的抗屈曲预测。相反,对于在某些关节处没有侧向约束的框架,本解决方案预测的侧向扭转屈曲阻力与基于设计标准方程式的侧向屈曲阻力明显不同,这表明需要考虑这种情况下的相互作用影响。

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