Overview of the Current Research Status of Concrete-Filled Steel Tube

Yang Hao
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Abstract

Steel tube concrete refers to a composite structure formed by filling concrete in a steel tube, and the steel tube and its core concrete can jointly bear external loads. The seismic performance of composite structures largely depends on the strength and ductility of the columns. In the structure, columns are the main vertical load-bearing components due to their high strength and good ductility. However, under seismic action, steel tube concrete columns may experience end steel tube wall buckling, and the concrete inside the pipes may be crushed and lose its load-bearing capacity, causing the overall structure to collapse. In order to better utilize the performance of steel tube concrete, this study analyzes the research of scholars and explores the axial compression performance, failure modes, and local buckling effects of different types of concrete filled in steel tubes on the structural performance of steel tube concrete. Therefore, it is particularly important to study the axial compression performance of steel-concrete columns and explore reasonable design methods to delay the local buckling of steel pipes, and accurately evaluate the seismic performance of steel-concrete columns under large earthquake responses.
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混凝土填充钢管研究现状概述
钢管混凝土是指在钢管中灌注混凝土形成的复合结构,钢管及其核心混凝土可共同承受外部荷载。复合结构的抗震性能主要取决于柱子的强度和延性。在结构中,柱子因其强度高、延性好而成为主要的竖向承重构件。然而,在地震作用下,钢管混凝土柱可能会出现端部钢管壁屈曲,管内混凝土可能会被压碎并失去承载能力,从而导致整体结构坍塌。为了更好地利用钢管混凝土的性能,本研究分析了学者们的研究,探讨了不同类型的钢管混凝土填充物的轴压性能、破坏模式以及局部屈曲效应对钢管混凝土结构性能的影响。因此,研究钢管混凝土柱的轴压性能,探索延缓钢管局部屈曲的合理设计方法,准确评价钢管混凝土柱在大地震反应下的抗震性能尤为重要。
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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