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Seismic vulnerability of flat plate column joint

机译:平板柱节点的地震易损性

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A brittle punching shear failure can arise in flat plate-column connections during an earthquake because of poor transfer capacity of shearing forces and unbalanced moments. To increase the shear capacity of the slab therefore, various types of shear reinforcement are used around such connections. This paper presents the response of slab column connections containing various types of slab shear reinforcement when subjected to combined gravity and cyclic lateral loading predicted by a Finite Element analysis program MASA. First, a calibration model was developed in MASA to simulate the tested flat plate-column joint. Then, finite element models of a flat plate-column joint with various types of slab shear reinforcement were developed. The presence of shear reinforcement significantly improves ductility, energy dissipation and drift capacity of the connection under the applied lateral cyclic loading. As a result, slab shear reinforcement, in the form of lacing bars is proposed in this paper. The simplicity of placement of this type reinforcement makes it an attractive alternative to single-leg and stud shear reinforcement.
机译:由于剪切力的传递能力差和力矩不平衡,在地震期间平板-柱连接中可能会发生脆性的冲剪剪切破坏。因此,为了增加板的剪切能力,在这种连接周围使用了各种类型的剪切增强。本文介绍了由有限元分析程序MASA预测的组合重力和循环侧向荷载作用下,包含各种类型的平板抗剪钢筋的平板柱连接的响应。首先,在MASA中开发了一个校准模型,以模拟测试的平板-柱接头。然后,建立了各种类型的平板抗剪钢筋平板柱节点的有限元模型。在施加的横向循环荷载作用下,抗剪钢筋的存在显着改善了连接的延展性,能量耗散和漂移能力。因此,本文提出了采用拉筋形式的平板抗剪钢筋。这种类型的钢筋放置简单,使其成为单腿和双头剪力钢筋的有吸引力的替代方案。

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