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Experimental and Numerical Analysis of the Bolt Connections in a Low-Rise Precast Wall Panel Structure System

机译:低上升预制墙板结构系统中螺栓连接的实验性和数值分析

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This paper develops a novel dry connection utilizing high-strength bolts and introduces the corresponding low-rise precast wall panel structure system. To investigate the seismic performance of the structure system with full bolt connections, monotonic loading tests of the connection joint and cyclic lateral loading tests of three full-scaled precast shear walls are both conducted. Based on the test data, axial and shear mechanical models of the connection are given. Meanwhile, experimental results show that the failure mode of the connection is dominated by anchored rebar ductile rupture, and the precast structure system presents a stable energy dissipation capacity and a good seismic ductility. The numerical model of the precast shear wall is then developed and validated by the cyclic loading test. Also a simplified calculation method to predict the lateral strength of the precast shear wall is proposed. According to the calculation results, the distance between the center of the connection and the edge of the shear wall is suggested to be 150?mm, while the wall thickness is recommended to be 120?mm or 150?mm. Finally, a three-story precast wall panel structure is employed to assess the collapse performance of the proposed precast structure system by using the presented numerical model. The results indicate that the proposed structure system with full bolt connections has high stiffness and high seismic resistance against collapse.
机译:本文采用高强度螺栓开发新型干燥连接,并引入了相应的低上升预制墙板结构系统。为了研究具有全螺栓连接结构系统的地震性能,连杆和循环横向加载试验的单调负载测试都进行了三个全缩放的预制剪力墙。基于测试数据,给出了连接的轴向和剪切机械模型。同时,实验结果表明,连接的故障模式由锚定钢筋延性破裂主导,预制结构系统呈现稳定的能量耗散能力和良好的地震延展性。然后通过循环负载测试开发并验证预制剪力墙的数值模型。还提出了一种简化的计算方法来预测预制剪力墙的横向强度。根据计算结果,建议连接的中心和剪力墙边缘之间的距离为150Ωmm,壁厚建议为120?mm或150Ωmm。最后,采用三层预制壁板结构来评估所提出的数字模型所提出的预制结构系统的塌陷性能。结果表明,具有全螺栓连接的所提出的结构系统具有高刚度和抗塌陷的高震性抗性。

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