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Elastic lateral stability of I-shaped cellular steel beams

机译:工字型钢梁的弹性横向稳定性

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In this paper, the lateral stability of cellular steel beams is numerically investigated. The study is carried out using three-dimensional finite element modeling of simply supported I-shaped cellular steel beams with a broad spectrum of cross-sectional dimensions, span lengths and web perforation configurations. Stability analyses are carried out for beams subjected to equal end moments, mid-span concentrated loads and uniformly distributed loads. Finite element results reveal that, unlike the case of conventional beams with solid webs, the moment-gradient coefficient Q_b is significantly influenced by the beam geometry and slenderness. In addition, the Q_b coefficient of cellular beams depends on the web perforation configuration. Moment-gradient coefficient values that fluctuate closely to those values recommended by design codes are associated with pure elastic lateral torsional buckling (LTB) deformations. As the beam slenderness decreases, the web distortion increases, leading to the lateral distortional buckling (LDB) mode, which is associated with lower Q-b values than code-recommended ones. Severe reduction in the Q_b coefficient to values less than 1.1 is noticed for shorter-span beams where the response is dominated by non-lateral local buckling modes. A simplified approach is developed to enable accurate prediction of a moment modification factor k_(LB) for cellular beams. The proposed k_(LB) factor is provided by an empirical formula that is derived based on the best fit of the finite element results related to lateral buckling (LTB and LDB) modes only. The proposed approach allows for accurate and conservative evaluation of the critical moment associated with the lateral torsional/distortional buckling of cellular beams. Several numerical examples are worked out to illustrate the application of the proposed procedure.
机译:本文对蜂窝状钢梁的横向稳定性进行了数值研究。这项研究是使用简单支撑的I形蜂窝状钢梁的三维有限元建模进行的,该钢梁的横截面尺寸,跨度长度和腹板穿孔结构谱范围广。对承受相同端矩,中跨集中荷载和均布荷载的梁进行了稳定性分析。有限元结果表明,与带有实心腹板的传统梁不同,弯矩梯度系数Q_b受梁几何形状和细长度的影响很大。另外,蜂窝状光束的Q_b系数取决于幅材穿孔构造。与设计规范建议的值紧密波动的矩梯度系数值与纯弹性横向扭转屈曲(LTB)变形有关。随着光束细长度的降低,腹板变形会增加,从而导致横向变形屈曲(LDB)模式,该模式与低于代号推荐值的Q-b值相关。对于短跨度光束,Q_b系数严重降低到小于1.1的值,其中响应受非横向局部屈曲模式支配。开发了一种简化的方法以能够准确预测蜂窝波束的矩修正因子k_(LB)。建议的k_(LB)因子由经验公式提供,该经验公式仅基于与横向屈曲(LTB和LDB)模式有关的有限元结果的最佳拟合而得出。所提出的方法允许对与蜂窝梁的横向扭转/变形屈曲相关的临界矩进行准确和保守的评估。算出了几个数值示例来说明所建议程序的应用。

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