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Analytical investigation of the cyclic behavior and plastic hinge formation in deep wide-flange steel beam-columns

机译:深宽翼缘钢梁柱的循环行为和塑性铰形成的分析研究

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摘要

This paper investigates the cyclic behavior of deep wide-flange sections, used as columns in steel Special Moment Frames (SMFs), through detailed finite element (FE) analysis. A wide range of wide-flange sections is subjected to symmetric cyclic lateral loading combined with different levels of constant compressive axial load ratios representing the loading conditions of interior steel columns in SMFs. The FE simulations demonstrate that wide-flange beam-columns, with web and flange slenderness ratios near the current compactness limits of seismic design provisions (AISC 341-10), experience rapid cyclic deterioration in flexural strength under high axial load ratios. It is also found that deep wide-flange slender sections shorten axially to about 10 % of their length due to severe flange and web local buckling. Based on the FE simulations, for bottom story columns, where axial load ratios are in the range of 20-35 %, a reduction to about two thirds of the current compactness limit for highly ductile members would achieve a 4 % chord rotation while maintaining a flexural strength larger than 80 % of the expected plastic flexural strength of a steel column. The FE simulation results also suggest that the pre-capping rotation predicted by current modeling recommendations for steel components (PEER/ATC 72-1) is overestimated for sections with high web and flange slenderness ratios undergoing monotonic and/or cyclic lateral loading combined with high axial load levels.
机译:本文通过详细的有限元(FE)分析,研究了在钢特殊矩框架(SMF)中用作圆柱的深宽法兰型材的循环行为。宽范围的宽翼缘截面承受对称的周期性横向载荷,并具有不同水平的恒定压缩轴向载荷比,这些载荷代表了SMF中内部钢柱的载荷条件。有限元仿真表明,腹板和翼缘的细长比接近抗震设计规定的当前压实度极限(AISC 341-10)的宽翼缘梁柱,在高轴向载荷比下,抗弯强度会经历快速的周期性劣化。还发现,由于严重的凸缘和腹板局部弯曲,深的宽凸缘细长部分轴向缩短至其长度的约10%。根据有限元模拟,对于轴向载荷比在20-35%范围内的底柱,将高延展性构件的当前密实度极限降低至三分之二,可实现4%的弦旋转,同时保持弯曲强度大于钢柱预期塑性弯曲强度的80%。有限元模拟结果还表明,对于高腹板和翼缘细长比高,承受单调和/或周期性侧向荷载并具有高强度的截面,高估了钢构件当前建模建议(PEER / ATC 72-1)所预测的预封盖旋转轴向载荷水平。

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