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Finite Element Analysis for Hysteretic Behavior of Thin-Walled CFT Columns with Large Cross Sections

机译:大横截面薄壁CFT柱滞回行为的有限元分析

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Thin-walled CFT columns with large cross sections are often used for elevated highway bridge piers in Japan because of their excellent earthquake resistance. This excellent earthquake resistance is primarily due to the restraint of the cyclic local buckling of the thin-walled steel tube caused by the complicated interface action between thin-walled steel tube with diaphragms and in-filled concrete. To predict the performance of thin-walled CFT columns by FEM in a direct manner, it is necessary to model the above interface action as well as the nonlinear behavior of steel tube and confined in-filled concrete properly. Herein, first, an accurate nonlinear FE model is presented to analyze the bi-directional hysteretic behavior of CFT columns. In this model, steel tube and in-filled concrete are represented by geometrically and materially nonlinear shell elements and solids elements, respectively. For the interface between steel and concrete, contact and friction behaviors are considered. Then, a bi-directional cyclic loading experiment is conducted on thin-walled CFT columns to investigate their ultimate behavior. Based on the failure pattern of the in-filled concrete observed in the experiment, a new concept of crush belt is introduced in the modeling of in-filled concrete. The validity of the proposed model is confirmed by the bi-directional cyclic loading experiment.
机译:由于其优异的地震阻力,具有大横截面的薄壁CFT柱通常用于日本的高速公路桥墩。这种优异的地震阻力主要是由于薄壁钢管的循环局部屈曲引起的薄壁钢管之间的循环局部屈曲,具有薄壁钢管与膜片和填充混凝土。为了以直接方式预测FEM通过FEM的薄壁CFT柱的性能,需要模拟上述接口动作以及钢管的非线性行为,并适当地限制填充混凝土。这里,提出了一种精确的非线性Fe模型以分析CFT柱的双向滞后行为。在该模型中,钢管和内含混凝土分别由几何和材料非线性壳体和固体元件表示。对于钢和混凝土之间的界面,考虑接触和摩擦行为。然后,在薄壁CFT柱上进行双向循环加载实验,以研究它们的最终行为。基于实验中观察到的填充混凝土的故障模式,在充满混凝土的建模中引入了挤压带的新概念。通过双向循环载荷实验证实了所提出的模型的有效性。

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