Alemayehu Robel Wondimu, Bae Jaehoon, Ju Young K, Park Min Jae
School of Civil, Environmental and Architectural Engineering, Korea University, 145 Anam-ro, Seongbuk-gu, Seoul 02841, Korea.
Department of Architectural Design, College of Engineering Science, Chonnam National University, Jeonnam 59626, Korea.
Materials (Basel). 2022 Apr 11;15(8):2791. doi: 10.3390/ma15082791.
Concrete-filled steel tubes (CFSTs) are widely used in construction. To achieve composite action and take full advantage of the two materials, strain continuity at the steel-concrete interface is essential. When the concrete core and steel tube are not loaded simultaneously in regions such as beam or brace connections to the steel tubes of a CFST column, the steel-concrete bond plays a crucial role in load transfer. This study uses a validated finite-element model to investigate the bond-slip behavior between the steel tube and concrete in square CFST mega columns through a push-out analysis of eleven 1.2- × 1.2-m mega columns. The bond-slip behavior of CFST mega columns with and without mechanical connectors, including shear studs, rib plates, and connecting plates, is studied. The finite-element results indicate that the mechanical connectors substantially increased the maximum bond stress. Among the analyzed CFST mega columns, those with closely spaced shear studs and rib plate connectors with circular holes exhibited the highest bond stress, followed by plate connectors and widely spaced shear stud connectors. In the case of shear stud connectors, the stud diameter and spacing influenced the bond behavior more than the stud length. As the stud spacing decreased, the failure mode shifted from studs shearing off to outward buckling of the steel tube.
钢管混凝土(CFST)在建筑中得到广泛应用。为实现组合作用并充分利用这两种材料,钢 - 混凝土界面处的应变连续性至关重要。当混凝土核心和钢管在诸如CFST柱的钢管与梁或支撑连接等区域不同时加载时,钢 - 混凝土粘结在荷载传递中起着关键作用。本研究使用经过验证的有限元模型,通过对11根1.2×1.2米巨型柱进行推出分析,研究方形CFST巨型柱中钢管与混凝土之间的粘结 - 滑移行为。研究了有无机械连接件(包括抗剪 studs、肋板和连接板)的CFST巨型柱的粘结 - 滑移行为。有限元结果表明,机械连接件显著提高了最大粘结应力。在分析的CFST巨型柱中,带有紧密间距抗剪 studs和圆孔肋板连接件的柱表现出最高的粘结应力,其次是板连接件和间距较大的抗剪 stud连接件。对于抗剪 stud连接件,stud直径和间距对粘结行为的影响大于stud长度。随着stud间距减小,破坏模式从stud剪断转变为钢管向外屈曲。