Numerical study of the plasticity effect on the behavior of short steel columns filled with concrete loaded axially

IF 1.2 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Frattura ed Integrita Strutturale Pub Date : 2022-09-22 DOI:10.3221/igf-esis.62.07
Yousria Boulmaali-Hacene Chaouche, Nadia Kouider, K. Djeghaba, B. Kebaili
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Abstract

For more than two decades, the construction technique using concrete filled steel tube (CFST) has been widespread throughout the world. Indeed, it has been demonstrated that the use of normal or high strength concrete, confined in a steel tube of circular shape can considerably improve its ductility as well as its load capacity, owing to the combination of the qualities of the two constituent materials; these tubes have an effortless execution, indeed, the concrete used in the CFST does not require formwork nor reinforcement, a durability of the two materials as well as a good behavior to fire, which was the effect desired at the origin of their elaboration. In this paper, we study the axial compression behavior of short circular steel tubes filled with concrete; their modelling will be performed using the ABAQUS/Standard calculation program. In order to accurately determine their behavior, we have created different models. Indeed, these tubes will be modeled in order to simulate different plastic state behaviours, namely a perfect elasto-plastic state, an elasto-plastic state with multilinear strain hardening and a third elasto-plastic behavior with strain hardening proposed by Tao et al. The tested columns consist of circular hollow sections which are designated in the literature as Concrete Filled Steel Tube (CFST), for which we vary the diameters, heights as well as the wall thicknesses, and which we fill with concrete of different qualities. The compressive behavior, including ultimate loads, confinement, load-deflection relationship and failure modes, was obtained from numerical models and compared with experimental and theoretical results based on Eurocode 4. All these results showed a good agreement and a satisfactory correlation, allowing us to assume that a correct modelling can be sufficient to simulate the behavior of CFST.
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塑性对轴向受压短钢柱性能影响的数值研究
二十多年来,钢管混凝土施工技术在世界各地得到了广泛应用。事实上,已经证明,由于两种组成材料的质量相结合,使用限制在圆形钢管中的普通或高强度混凝土可以显著提高其延展性和承载能力;这些钢管的施工非常轻松,事实上,钢管混凝土中使用的混凝土不需要模板也不需要加固,这两种材料的耐久性以及良好的防火性能,这是它们制作之初所期望的效果。本文研究了混凝土填充圆钢管的轴压性能;将使用ABAQUS/标准计算程序进行建模。为了准确地确定他们的行为,我们创建了不同的模型。事实上,这些管将被建模以模拟不同的塑性状态行为,即完美弹塑性状态、具有多重线性应变硬化的弹塑性态和Tao等人提出的具有应变硬化的第三弹塑性行为。试验柱由圆形空心截面组成,在文献中被指定为钢管混凝土(CFST),我们可以改变其直径、高度和壁厚,并用不同质量的混凝土填充。从数值模型中获得了压缩性能,包括极限载荷、约束、载荷-挠度关系和破坏模式,并与基于欧洲规范4的实验和理论结果进行了比较。所有这些结果都显示出良好的一致性和令人满意的相关性,使我们能够假设正确的建模足以模拟钢管混凝土的行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Frattura ed Integrita Strutturale
Frattura ed Integrita Strutturale Engineering-Mechanical Engineering
CiteScore
3.40
自引率
0.00%
发文量
114
审稿时长
6 weeks
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