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Rotation Capacity of I-Shaped Beams under Alternating Axial Forces Based on Buckling-Mode Transitions

机译:基于屈曲模式过渡的交替轴向力下的I形​​梁的旋转容量

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Abstract During earthquakes, I-shaped beams (I-beams) in a braced structure are subjected to the flexural moment synchronized with reversed axial forces transmitted from buckling restrained braces. A prior study used the modified width–thickness ratio to evaluate the rotation capacity of I-beams that failed by local buckling under alternating axial force. Generally speaking, I-beams in braced frames are designed with larger sections to resist severe stress conditions. The buckling mode might thereby be switched to web-shear buckling, leading to inaccurate estimation of the rotation capacity when using existing equations. For this study, a classification index of buckling mode is constructed considering axial force and plate interactions. Moreover, a novel index and formulas are proposed for evaluating the rotation capacity of I-beams under alternating axial forces, including buckling-mode transition effects.
机译:摘要在地震期间,支撑结构中的I形梁(I-梁)经受与从屈曲束缚括号传递的反向轴向力同步的弯曲力矩。先前的研究使用改进的宽度厚度比,以评估通过局部屈曲在交替轴向力下失败的I-梁的旋转容量。一般而言,支撑框架中的I-梁采用较大的部分设计,以抵抗严重的应力条件。由此可以切换到网剪屈曲的屈曲模式,导致使用现有方程时不准确地估计旋转容量。对于该研究,考虑轴向力和板相互作用构造屈曲模式的分类指标。此外,提出了一种新颖的指标和公式,用于评估I-梁在交替轴向力下的旋转容量,包括屈曲模式转换效果。

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