Strength and Deformation of Concrete-Encased Grouting-Filled Steel Tubes Columns Exposed to Monotonic Quasi-Static Loading Conditions

Ahlam A. Abbood, Nazar Oukaili, A. Allawi, George Wardeh
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Abstract

This study aimed to evaluate the effectiveness of a novel concrete-encased column (CE) using small circular steel tubes filled with cementitious grouting material (GFST) as the primary reinforcement instead of traditional steel bars. The research involved three different types of reinforcement: conventional steel bars, concrete-filled steel tubes with 30% of the reinforcement ratio of steel bars, and concrete-filled steel tubes with the same reinforcement ratio as steel bars. Twenty-four circular concrete columns were tested and categorized into six groups based on the type of reinforcement employed. Each group comprised four columns, with one subjected to concentric axial load, two subjected to eccentric axial load (with eccentricities of 25 mm and 50 mm, respectively), and one tested under lateral flexural loads. To validate the experimental results, finite element (FE) analysis was conducted using ABAQUS software version 6.14. The experimental findings for concentric load reveal that columns with the second type of reinforcement, concrete-filled steel tubes with 30% of the reinforcement ratio of steel bars exhibited a failure load 19% lower than those with steel bars, while columns with the third type of reinforcement, concrete-filled steel tubes with the same reinforcement ratio as steel bars achieved a failure load 17% greater than the traditional steel bars. The FE analysis demonstrates good agreement with the experimental outcomes in terms of ultimate strength, deformation, and failure modes.
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单调准静态荷载条件下混凝土套筒灌浆填充钢管柱的强度与变形
本研究旨在评估一种新型混凝土包裹柱(CE)的有效性,该柱使用填充水泥基灌浆材料(GFST)的小圆钢管作为主配筋,而不是传统的钢筋。研究涉及三种不同类型的配筋:传统钢筋、配筋率为钢筋 30% 的混凝土填充钢管以及配筋率与钢筋相同的混凝土填充钢管。测试了 24 根圆形混凝土柱,并根据采用的钢筋类型将其分为六组。每组包括四根柱子,其中一根承受同心轴向荷载,两根承受偏心轴向荷载(偏心率分别为 25 毫米和 50 毫米),一根承受横向弯曲荷载。为验证实验结果,使用 ABAQUS 软件 6.14 版进行了有限元分析。同心荷载的实验结果表明,采用第二种加固方式(钢筋配筋率为 30% 的混凝土填充钢管)的柱子的破坏荷载比采用钢筋的柱子低 19%,而采用第三种加固方式(与钢筋配筋率相同的混凝土填充钢管)的柱子的破坏荷载比传统钢筋高 17%。在极限强度、变形和破坏模式方面,有限元分析与实验结果非常吻合。
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