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Development of a monolithic-like precast beam-column moment connection: Experimental and analytical investigation

机译:整体式预制梁柱矩连接的开发:实验和分析研究

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This study aims to develop a novel monolithic-like precast beam-column connection for reinforced concrete (RC) structures. The proposed connection system has several advantages such as rapid assembly and disassembly, reusability, and replaceability if damaged during an earthquake event. An experimental investigation was first carried out to determine the seismic performance of the proposed connections. In total, six full-scale precast and monolithic T-shape beam-column connection specimens with different reinforcement ratios, specimen dimensions and detailing were tested under displacement controlled cyclic loading, while the axial load on the column was kept constant. The cyclic behaviour, curvature distribution, failure mode, energy dissipation capacity and ductility of the specimens were obtained using the experimental outputs. Detailed non-linear finite element (FE) models were then developed using ABAQUS. It is shown that the FE models can accurately predict the overall performance of the precast connections in terms of initial stiffness, lateral load-bearing capacity and post-peak behaviour. The results indicate that, in general, the precast connections exhibited considerably higher (up to 34%) ductility and ultimate drift ratio (deformability) compared to similar monolithic connections. For the same drift ratio, monolithic connections exhibited slightly higher (on average 10%) energy dissipation capacity, while the precast connections generally dissipated higher energy at their ultimate point (post-peak lateral drift corresponding to 15% loss in lateral strength). It is demonstrated that the monolithic-like precast connections can satisfy the ACI 318-14 acceptance criteria, while they also sustain the ASCE 41-17 Collapse Prevention (CP) limits. Therefore, the proposed connection system is considered to be suitable for RC structures in seismic regions.
机译:这项研究旨在为钢筋混凝土(RC)结构开发一种新颖的整体式预制梁柱连接。所提出的连接系统具有多个优点,例如快速组装和拆卸,可重复使用性以及在地震事件中损坏时的可更换性。首先进行了一项实验研究,以确定拟议连接的抗震性能。总共在位移控制的循环荷载下测试了六个具有不同配筋率,试样尺寸和细部的全尺寸预制和整体式T形梁柱连接标本,同时保持了圆柱的轴向荷载不变。使用实验输出获得了样品的循环特性,曲率分布,破坏模式,能量耗散能力和延展性。然后,使用ABAQUS开发了详细的非线性有限元(FE)模型。结果表明,有限元模型可以准确地预测预制连接的整体性能,包括初始刚度,侧向承载能力和峰后行为。结果表明,与类似的整体式连接相比,预制连接通常显示出更高的延展性(高达34%)和最终的漂移比(可变形性)。对于相同的漂移比,单片连接表现出稍高的能量消散能力(平均10%),而预制连接通常在其极限点消耗较高的能量(峰后横向漂移对应于横向强度损失15%)。事实证明,整体式预制连接可以满足ACI 318-14接受标准,同时还可以满足ASCE 41-17防塌(CP)限制。因此,所提出的连接系统被认为适用于地震地区的钢筋混凝土结构。

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