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Test and analysis of a new ductile shear connection design for RC shear walls

机译:RC剪力墙新型延性剪力连接设计的测试与分析

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摘要

This paper presents a new and construction-friendly shear connection for the assembly of precast reinforced concrete shear wall elements. In the proposed design, the precast elements have indented interfaces and are connected by a narrow zone grouted with mortar and reinforced with overlapping U-bar loops. Contrary to conventional shear connections, the planes of the U-bar loops are here parallel to the plane of the wall elements. This feature enables a constructionfriendly installation of the elements without the risk of rebars clashing. The core of mortar inside each U-bar loop is reinforced with a transverse double T-headed bar to ensure transfer of tension between the overlapping U-bars. Push-off tests show that a significantly ductile load-displacement response can be obtained by the new solution as compared to the performance of the conventional keyed shear connection design. The influence of the interface indentation geometry was investigated experimentally and the failure modes in the push-off tests were identified by use of digital image correlation (DIC). For strength prediction, rigid plastic upper-bound models have been developed with inspiration from the observed failure mechanisms. Satisfactory agreement between tests and calculations has been obtained.
机译:本文为预制钢筋混凝土剪力墙构件的装配提出了一种新型且易于施工的剪力连接。在所提出的设计中,预制构件具有凹入的界面,并通过用砂浆灌浆并用重叠的U型杆环加固的狭窄区域连接。与传统的剪力连接相反,U形环的平面在此平行于壁单元的平面。此功能使结构易于安装,而不会发生钢筋碰撞的风险。每个U形杆环内部的砂浆芯都通过横向双T头杆进行加固,以确保在重叠的U形杆之间传递张力。推挤试验表明,与传统的键控剪力连接设计相比,通过新的解决方案可以获得明显的延性载荷-位移响应。实验研究了界面压痕几何形状的影响,并通过使用数字图像相关性(DIC)识别了推压测试中的失效模式。为了进行强度预测,已经从观察到的破坏机制中获得启发,开发了刚性塑料上限模型。测试和计算之间已获得令人满意的协议。

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