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Recent Developments in the GBT-Based Numerical Modeling of Steel-Concrete Composite Beams

机译:基于GBT的钢-混凝土组合梁数值模拟的最新进展

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This paper presents the latest developments concerning the numerical modeling of steel-concrete composite beams using GBT-based (beam) finite elements. In particular, it is shown that GBT makes it possible to assess, accurately and with computational efficiency, the buckling (bifurcation) behavior of steel-concrete composite beams subjected to negative (hogging) bending. Two relevant buckling phenomena are considered, namely (ⅰ) local buckling of the web (plate-like), possibly involving the torsional rotation of the compression flange, and (ⅱ) distortional buckling, combining a lateral displacement/rotation of the lower flange with cross-section transverse bending. The determination of the buckling loads is performed in two stages: (ⅰ) a pre-buckling analysis is first carried out, accounting for shear lag and concrete cracking effects, and (ⅱ) an eigenvalue buckling analysis is performed next, on the basis of the calculated pre-buckling stresses, allowing for cross-section distortion and plate bending. Several numerical examples are presented, illustrating the application of the proposed GBT-based finite element and providing clear evidence of its capabilities and potential.
机译:本文介绍了基于GBT(梁)有限元的钢-混凝土组合梁数值建模的最新进展。特别地,示出了GBT使得可以精确地并且以计算效率评估经受负(弯头)弯曲的钢混凝土组合梁的屈曲(分叉)行为。考虑了两个相关的屈曲现象,即(ⅰ)腹板(板状)的局部屈曲,可能涉及压缩法兰的扭转旋转,以及(ⅱ)变形屈曲,将下部法兰的横向位移/旋转与横截面横向弯曲。屈曲载荷的确定分两个阶段进行:(ⅰ)首先进行预屈曲分析,考虑剪力滞后和混凝土开裂的影响,(ⅱ)在以下基础上进行特征值屈曲分析:计算出的预屈曲应力,允许横截面变形和板弯曲。给出了几个数值示例,说明了所建议的基于GBT的有限元的应用,并提供了其功能和潜力的清晰证据。

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