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Progressive Collapse-Resisting Mechanisms of Planar Prestressed Concrete Frame

机译:平面预应力混凝土框架的渐进抗塌机理

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This paper presents the behavior of six tests of planar prestressed concrete frames under the loss of a middle column. The six tests consist of two non prestressed reinforced concrete (RC) specimens and four prestressed concrete (PC) specimens with bonded post-tensioning tendons (BPT). The structural response of the specimens with different flexural reinforcement ratio, span-depth ratio, and effective prestress level has been reported. In addition, the impact of parabolic BPT on the behavior of RC frames to resist progressive collapse is also evaluated. Experimental results indicated that the BPT cannot only increase the initial stiffitess and yielding load of the RC counterparts, but also increase the ultimate load capacity in the catenary action stage. Moreover; it will impact the load-resisting mechanisms and the failure modes. Contrary to the commonly accepted sequential mobilization of compressive arch action and catenary action to resist progressive collapse of RC frames, no effective compressive arch action is developed in PC frames to mitigate progressive collapse risk Based on experimental observations, it is found that higher effective prestress in BPT results in enhanced initial stiffitess and yielding load but less deformation capacity and ultimate load capacity. It is also found that higher non-prestressed flexural tensile reinforcement ratio could improve the behavior of PC specimens to resist progressive collapse.
机译:本文介绍了在中间柱损失下进行六个平面预应力混凝土框架试验的性能。六个测试包括两个非预应力钢筋混凝土(RC)标本和四个具有粘结后张预应力筋(BPT)的预应力混凝土(PC)标本。已有报道了不同抗弯配比,跨深比和有效预应力水平的试件的结构响应。此外,还评估了抛物线BPT对RC框架抵抗渐进塌陷行为的影响。实验结果表明,BPT不仅可以增加RC构件的初始刚度和屈服荷载,而且可以增加悬链作用阶段的极限承载力。此外;它将影响耐压机制和故障模式。与普遍接受的顺序抗压拱起和悬链作用动员来抵抗RC框架的逐渐倒塌相反,在PC框架中未开发有效的压缩拱起作用来减轻进行性倒塌的风险。根据实验观察,发现在混凝土框架中较高的有效预应力BPT增强了初始刚度和屈服载荷,但变形能力和极限载荷能力却较小。还发现较高的非预应力挠曲拉伸增强比可以改善PC试样抵抗渐进塌陷的行为。

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