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Effect of flexural reinforcement type and ratio on the punching behavior of RC slab-column edge connections subjected to reversed-cyclic lateral loads

机译:抗弯钢筋类型和配比对承受反向循环荷载的RC板-柱边缘连接冲孔性能的影响

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摘要

Three full-scale reinforced-concrete (RC) slab-column edge connections were constructed and tested to failure under a combination of gravity load and uniaxial reversed-cyclic lateral load. The main test parameters were the flexural reinforcement type [steel or glass fiber-reinforced polymer (GFRP)] and flexural reinforcement ratio [0.7 or 1.4%]. The performance of the connections was evaluated in terms of mode of failure, hysteretic response, stiffness, energy dissipation and strains in the reinforcement. It was demonstrated that GFRP-RC connections are able to safely achieve or exceed the minimum 1.50% drift capacity before punching failure with adequate deformability. The low modulus of elasticity and high tensile strength of GFRP bars allowed GFRP-RC connections to experience comparable reinforcement strains to those in the steel-RC counterpart. In addition, the linear nature of GFRP reinforcement resulted in lower stiffness degradation and lower residual damage in GFRP-RC connections compared to the steel-RC connection.
机译:构造了三个全尺寸钢筋混凝土(RC)板-柱边缘连接,并在重力载荷和单轴反向循环侧向载荷共同作用下进行了破坏测试。主要测试参数为抗弯增强型[钢或玻璃纤维增​​强聚合物(GFRP)]和抗弯增强比[0.7或1.4%]。根据失效模式,滞后响应,刚度,能量耗散和钢筋应变来评估连接的性能。结果表明,在冲孔失败之前,GFRP-RC连接能够安全地达到或超过最小1.50%的漂移能力,并具有足够的可变形性。 GFRP筋的低弹性模量和高拉伸强度使GFRP-RC连接可承受与钢-RC对应相当的增强应变。此外,与钢-RC连接相比,GFRP增强材料的线性特性导致GFRP-RC连接的刚度下降较小,残余损伤较小。

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