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GBT-based finite element to assess the buckling behaviour of steel-concrete composite beams

机译:基于GBT的有限元评估钢混凝土组合梁的屈曲性能

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摘要

In this paper, an accurate and computationally efficient Generalised Beam Theory (GBT) finite element is proposed, which makes it possible to calculate buckling (bifurcation) loads of steel-concrete composite beams subjected to negative (hogging) bending. Two types of buckling modes are considered, namely (i) local (plate-like) buckling of the web, possibly involving a torsional rotation of the lower 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 geometrically linear pre-buckling analysis is first carried out, accounting for shear lag and concrete cracking effects, and (ii) an eigenvalue buckling analysis is subsequently performed, using the calculated pre-buckling stresses and allowing for cross-section in-plane and out-of-plane (warping) deformation. The intrinsic versatility of the GBT approach, allowing the incorporation of a relatively wide range of assumptions, is used to obtain a finite element with a reasonably small number of DOF5 and, in particular, able to comply with the principles of the "inverted U-frame" model prescribed in Eurocode 4 [1]. Several numerical examples are presented, to illustrate the application of the proposed GBT-based finite element and provide clear evidence of its capabilities and potential. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在本文中,提出了一种精确且计算效率高的广义梁理论(GBT)有限元,这使得计算负向(弯头)弯曲的钢混凝土组合梁的屈曲(分叉)载荷成为可能。考虑了两种类型的屈曲模式,即(i)腹板的局部(板状)屈曲,可能涉及下凸缘的扭转旋转,以及(ii)变形屈曲,结合了下凸缘的横向位移/旋转横截面横向弯曲。屈曲载荷的确定分两个阶段进行:(i)首先进行几何线性预屈曲分析,考虑剪切滞后和混凝土开裂影响;(ii)随后使用特征值进行屈曲特征值屈曲分析。计算出的预屈曲应力,并允许横截面在平面内和平面外(翘曲)变形。 GBT方法的内在通用性允许结合相对广泛的假设,可用于获得具有相当少量DOF5的有限元,并且特别是能够遵循“倒U-框架”模型在欧洲规范4 [1]中规定。给出了几个数值示例,以说明所建议的基于GBT的有限元的应用,并提供其功能和潜力的清晰证据。 (C)2016 Elsevier Ltd.保留所有权利。

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