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首页> 外文期刊>Journal of Constructional Steel Research >Experimental and numerical investigations on the seismic response of built-up battened columns
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Experimental and numerical investigations on the seismic response of built-up battened columns

机译:关于建筑施工柱地震反应的实验和数值研究

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摘要

Built-up battened columns are lightweight and have a larger moment of inertia when compared with columns made by a single profile. However, these columns have shown poor seismic performance during past earthquakes. In this study, experimental and numerical investigations were focused on the seismic performance of these columns. A full-scale built-up battened column was subjected to quasi-static cyclic loading and its response was recorded. Furthermore, 81 built-up battened columns were simulated in ABAQUS software. The effects of batten spacing, batten thickness, chord distance, and axial force on the cyclic response of simulated columns were investigated. The obtained results indicated that the bulging of chord webs together with the local buckling of chord flanges were the main reason for the failure of columns. Besides, in all columns, the maximum stress in chords was almost twice larger than the maximum stress in battens. Furthermore, an increase in the batten thickness or a decrease in the batten spacing slightly increased the ultimate load of columns. Columns with a thicker batten exhibited a slightly smaller plastic deformation. The displacement ductility ratios of the built-up battened columns were all less than two even when they were subjected to an axial compression ratio smaller than 0.2. It was also observed that, in all columns, the ratio of ultimate load to the effective yield strength was less than 1.4. (C) 2020 Elsevier Ltd. All rights reserved.
机译:与单个档案制成的柱相比,建立的龙头柱是轻量级的,并且具有更大的惯性矩。然而,这些柱在过去地震期间表现出差的地震性能。在本研究中,实验性和数值调查集中在这些柱的地震性能上。对全尺寸的构建坯柱进行准静态循环载荷,并记录其响应。此外,在ABAQUS软件中模拟了81个内置的压缩​​列。研究了铸造间距,板条厚度,弦距离和轴向力对模拟柱的环状响应的影响。所获得的结果表明,弦纤维网与局部屈曲的凸缘凸缘是柱子失败的主要原因。此外,在所有列中,和弦的最大应力几乎是比球体的最大应力大的两倍。此外,压板厚度的增加或压延间距的减小略微增加了柱的最终载荷。具有较厚的压花的柱表现出稍微较小的塑性变形。即使当它们经受小于0.2的轴向压缩比时,内置的施加柱的位移延展比也小于两个。还观察到,在所有柱中,最终负荷与有效屈服强度的比率小于1.4。 (c)2020 elestvier有限公司保留所有权利。

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