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A 3D fibre beam-column element with shear modelling for the inelastic analysis of steel structures

机译:具有剪切建模的3D纤维梁柱单元,用于钢结构的非弹性分析

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摘要

A force-based fiber beam-column element is proposed for the capacity assessment of frame structures under high shear. The proposed element is suitable for the performance assessment of large scale steel structures, which are not flexure-dominated. The element formulation follows the assumptions of the Timoshenko beam theory, while its kinematics are obtained through the natural-mode method. The element state-determination phase, instead of uniaxial material laws, typically associated with fiber elements, is based on a three-dimensional law taking into consideration the interaction between axial, bending, shear and torsion. Numerical examples are presented confirming the accuracy and the computational efficiency of the proposed formulation under monotonic, cyclic and dynamic/seismic loading. Compared to experimental results and the results of detailed finite element models, excellent agreement is achieved.
机译:提出了基于力的纤维梁柱单元,用于高剪力框架结构的承载力评估。拟议的元素适用于非弯曲为主的大型钢结构的性能评估。单元公式遵循蒂莫申科梁理论的假设,而其运动学是通过自然模式方法获得的。元素状态确定阶段不是通常与纤维元素关联的单轴材料定律,而是基于三维定律,其中考虑了轴向,弯曲,剪切和扭转之间的相互作用。数值例子证实了所提出配方在单调,周期性和动态/地震荷载下的准确性和计算效率。与实验结果和详细的有限元模型的结果相比,获得了很好的一致性。

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