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Axial Load Behavior of Ultrahigh Strength Concrete-Filled Steel Tube Columns of Various Geometric and Reinforcement Configurations

机译:超高强度混凝土钢管柱的轴向载荷行为各种几何和加固配置

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摘要

This paper presents the behavior of concrete-filled steel tube (CFST) columns infilled with fiber-reinforced self-consolidating ultrahigh strength concrete (UHSC) subjected to axial concentric monotonic loading to failure. UHSC is expected to improve ease of fabrication, strength, and ductility of CFST columns. Seventeen columns having varying geometric properties such as tube wall thickness, cross-sectional shape (circular, rectangular, and square), and slenderness were constructed and tested by applying load through both steel tube and concrete core. Circular columns were further distinguished by the presence or absence of main and hoop steel reinforcing bars in the core concrete. Axial load-displacement response, axial/transverse strain development, and failure modes were recorded during the loading history to analyze the performance. Experimental confined concrete strength and axial strength of UHSC-filled CFST columns were compared with those obtained from three suggested analytical models and three code-based design procedures including Eurocode 4, Canadian CAN/CSA S16, and American AISC. Analytical models were found to over-predict the confined concrete strength and the axial strength of CFST columns. Canadian and American codes were found to be most applicable for predicting axial strength of UHSC-filled CFST columns while remaining conservative.
机译:本文介绍了用纤维增强自合并超高强度混凝土(UHSC)渗入混凝土填充钢管(CFST)柱的行为,使轴向同心单调加载失效。预计UHSC将提高CFST柱的制造,强度和延展性的便利性。通过通过钢管和混凝土芯施加负荷来构造和测试具有不同几何特性的十七个柱,例如管壁厚度,横截面形状(圆形,矩形和正方形)和细长。通过核心混凝土中的主和箍钢加强杆的存在或不存在,进一步区分圆柱。在装载历史期间记录轴向负载 - 位移响应,轴向/横向应变开发和故障模式,以分析性能。将UHSC填充的CFST柱的实验混凝土强度和轴向强度与三个建议的分析模型和三个基于代码的设计程序进行了比较,包括欧元建4,加拿大CAN / CSA S16和美国AISC。发现分析模型过度预测CFST柱的混凝土强度和轴向强度。发现加拿大和美国代码最适用于预测UHSC填充的CFST柱的轴向强度,同时保持保守。

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