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首页> 外文期刊>Journal of structural engineering >Progressive Collapse Resistance of Precast Concrete Frames with Discontinuous Reinforcement in the Joint
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Progressive Collapse Resistance of Precast Concrete Frames with Discontinuous Reinforcement in the Joint

机译:节点间不连续加固的预制混凝土框架的渐进抗倒塌性

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摘要

Boundary conditions of precast concrete frames play a crucial role in their progressive collapse resistance under middle column removal scenarios. Interior and exterior frames behave differently as a result of different horizontal restraints on side columns. This paper presents an experimental study on four precast concrete frames with either 90 degrees bend or lap-splice of the bottom reinforcement in the beam-column joint. The resistance of interior and exterior frames were determined quantitatively. Reinforcement detailing in the beam-column joint dominated structural resistance and deformation capacity of interior frames. Side columns of interior frames remained intact under compressive arch action (CAA) and catenary action, in spite of significant horizontal deflections and severe cracking because of initial horizontal compression at the CAA stage and subsequent tension at the catenary action stage. However, one exterior frame exhibited flexural failure of the side column when subject to catenary action, evidenced by concrete crushing in the compression zone. In side beam-column joints, diagonal shear cracks were observed at the CAA stage, and shear links were mobilized to sustain the shear force. Finally, relevant conclusions on the progressive collapse design of precast concrete frames are drawn from the experimental findings. (C) 2017 American Society of Civil Engineers.
机译:在拆除中柱的情况下,预制混凝土框架的边界条件在其逐步抗倒塌性中起着至关重要的作用。由于侧柱的水平约束不同,内部和外部框架的行为也有所不同。本文对四根预制的混凝土框架进行了试验研究,这些框架在梁柱节点的底部钢筋有90度弯曲或搭接。定量确定内部和外部框架的电阻。梁柱节点中的钢筋细节决定了内部框架的结构抗力和变形能力。尽管由于在CAA阶段最初的水平压缩以及随后在悬链线作用阶段的水平拉伸而产生了显着的水平挠曲和严重的开裂,但内部框架的侧柱在压缩拱作用(CAA)和悬链线作用下仍保持完整。但是,一个外部框架在受到悬链作用时表现出侧柱的挠曲破坏,这在压缩区内的混凝土压碎中得到了证明。在侧梁-柱节点,在CAA阶段观察到对角剪切裂缝,并且动员了剪切连杆以维持剪切力。最后,从实验结果中得出了预制混凝土框架逐步倒塌设计的相关结论。 (C)2017年美国土木工程师学会。

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