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Seismic performance of ductility classes medium RC beam-column connections with continuous rectangular spiral transverse reinforcements

机译:具有连续矩形螺旋横向钢筋的延性等级中型RC梁柱连接的抗震性能

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The seismic performance of RC columns can considerably be improved through the use of continuous spiral reinforcement in terms of ductility and energy dissipation capacity. Since the beam-column connections were subjected to brittle failure after earthquakes, the simultaneous application of this method in both beams and columns could greatly improve the seismic behaviour of such connections. In this investigation, a new proposed detail for beam to column connection introduced as "twisted opposing rectangular spiral" was investigated both experimentally and numerically and its seismic performance was verified through comparison with normal rectangular spiral and conventional shear reinforcement systems. In this research, three full scale beam to column connections were first designed according to Eurocode (EC8-04) for Medium ductility classes and then tested by quasi-static cyclic loading suggested by ACI Building Code (ACI 318-08). Finally, numerical methods were hired to validate the experimental results. The results indicated that the ultimate lateral resistance, ductility and energy dissipation capacity of the connection could be improved using the new proposed connection.
机译:在延展性和能量耗散能力方面,通过使用连续螺旋加强筋可以显着改善RC柱的抗震性能。由于梁柱连接在地震后会发生脆性破坏,因此在梁和柱中同时应用此方法可以大大改善此类连接的抗震性能。在这项研究中,通过实验和数值研究了一种新的提议的梁到柱连接的细节,称为“扭曲的相对矩形螺旋”,并通过与常规矩形螺旋和传统的剪力增强系统进行比较,验证了其抗震性能。在这项研究中,首先根据欧洲规范(EC8-04)为中等延性等级设计了三个满度梁到柱的连接,然后通过ACI建筑规范(ACI 318-08)建议的准静态循环荷载进行了测试。最后,采用数值方法验证了实验结果。结果表明,使用新提出的连接可以改善连接的极限侧向阻力,延展性和能量耗散能力。

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