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Seismic performance of innovative hybrid precast reinforced concrete beam- to-column connections

机译:创新的混合型预制钢筋混凝土梁对柱连接的抗震性能

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Precast construction of structural buildings requires connection techniques that can shorten the process using only simple on-site activities while still guaranteeing adequate strength, energy dissipation, stiffness, and ductility. The construction methods should decrease the use of formwork and temporary bracing to save time and costs. In this study, innovative hybrid connections using steel tubes, steel plates, and steel couplers to join beams and columns were proposed and tested under reversed cyclic loading. Five half-scale samples of the hybrid precast joints, including the monolithic and precast joints, were examined to evaluate the seismic performance of the connections. The hybrid connections showed better performance in terms of load, displacement, drift ratio, ductility, strength, stiffness, and energy dissipation compared to a monolithic connection. The drift ratio, moment capacity, strength, and total cumulative energy dissipation of the hybrid connections were higher by 12.5-50.0%, 34.68-59.57%, 35.0-60.0%, and 50.99-331.32%, respectively, when compared with a monolithic connection. The failure modes of the hybrid connections were governed by yielding steel reinforcement, yielding steel plate, and flexural failure, with less extensive damage compared to the monolithic joint. The hybrid connections were effective in shifting the plastic hinges to outside the connection zone. Therefore, the hybrid connections can be used in high seismic zones because the superior performance results meet the requirements of the seismic codes.
机译:结构建筑物的预制施工需要连接技术,这些连接技术可以仅通过简单的现场活动来缩短过程,同时仍要保证足够的强度,能量耗散,刚度和延展性。施工方法应减少模板和临时支撑的使用,以节省时间和成本。在这项研究中,提出了使用钢管,钢板和钢连接器连接梁和柱的创新混合连接,并在反向循环荷载下进行了测试。对混合预制接头的五个半尺寸样本(包括整体接头和预制接头)进行了检查,以评估连接的抗震性能。与整体连接相比,混合连接在负载,位移,漂移比,延展性,强度,刚度和能量耗散方面表现出更好的性能。与整体连接相比,混合连接的漂移率,力矩容量,强度和总累积能量耗散分别高12.5-50.0%,34.68-59.57%,35.0-60.0%和50.99-331.32%。 。混合连接的失效模式由屈服钢筋,屈服钢板和挠曲失效控制,与整体式接头相比,破坏程度较小。混合连接有效地将塑料铰链移至连接区域之外。因此,混合连接可用于高地震带,因为优越的性能结果可以满足地震规范的要求。

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