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Experimental Study on Progressive Collapse-Resistant Behavior of Reinforced Concrete Frame Structures

机译:钢筋混凝土框架结构抗渐进倒塌性能的试验研究

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A static experimental study to investigate progressive failure of a reinforced concrete frame due to the loss of a lower story column is described. A four-bay and three-story one-third scale model representing a segment of a larger planar frame structure was tested. A constant vertical load was applied to the top of the middle column by a servo-hydraulic actuator to simulate the gravity load of the upper floors and the failure of the middle column of the first story was simulated by unloading a mechanical jacking system. The frame collapse, defined in this study as the rupture of tension steel bars in the floor beams, occurred at a vertical unloading displacement of 456 mm (18 in.) that corresponds to a beam drift angle (rotation with respect to the horizontal) of 10.3 degrees. Based on the experimental observations, the mechanical behavior of the model frame is analyzed and the redistribution and transition of the load resisting mechanisms is discussed. It is concluded that the calculated capacity of the frame based on the plastic limit state was approximately 70% of the tested failure capacity if catenary effects are also included.
机译:描述了一项静态实验研究,该研究旨在研究由于缺少下部立柱而导致钢筋混凝土框架逐渐破坏的情况。测试了代表一个较大平面框架结构的一部分的四层和三层三分之一的比例模型。伺服液压致动器将恒定的竖向载荷施加到中柱的顶部,以模拟楼板的重力载荷,并通过卸载机械顶升系统来模拟第一层中柱的破坏。框架倒塌在本研究中定义为楼板梁中拉伸钢筋的破裂,发生在垂直卸载位移456毫米(18英寸)时,该位移对应于梁的梁漂移角(相对于水平方向的旋转)。 10.3度。在实验观察的基础上,分析了模型框架的力学行为,并讨论了载荷抵抗机制的重新分布和过渡。结论是,如果还包括悬链线效应,则基于塑性极限状态的框架计算容量约为测试失效容量的70%。

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