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首页> 外文期刊>Magazine of Concrete Research >Seismic behaviour of RC jacketed columns under different axial loads
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Seismic behaviour of RC jacketed columns under different axial loads

机译:不同轴向载荷下RC夹紧柱的地震行为

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This study examines the flexural performance of reinforced concrete (RC) columns strengthened through a seismic jacket technique developed using a prefabricated steel bar unit that forms peripheral closed hoops and supplementary V ties, satisfying the design requirements of the ACI 318-14 seismic provisions. Three RC jacketed columns were prepared with a parameter of axial load levels and tested under a constant concentric axial load and cyclic lateral loads. Analytical approaches were also applied to examine the axial load-moment interaction of the RC jacketed columns when considering the confinement effect provided by the jacket section and to investigate the applicability of the previous performance-based design models proposed for virgin seismic columns. The test results show that the developed jacket technique possesses a good potential in enhancing the flexural stiffness, strength and ductility of deficient columns, even under a high axial load. Reinforced concrete jacketed columns possess a higher ductility than that estimated using the ductility parameter model, regardless of the axial load level. Thus, the jacket section including the seismic details of a transverse reinforcement can be conservatively designed, based on the axial load-moment interaction and ductility parameter model for the moment and ductility enhancements required by deficient columns.
机译:本研究介绍了通过使用预制钢筋单元开发的抗锯齿技术强化加强的钢筋混凝土(RC)柱的弯曲性能,这些钢筋装置形成外围封闭箍和补充V领带,满足ACI 318-14地震规定的设计要求。使用轴向载荷水平的参数制备三个RC夹套柱,并在恒定的同心轴向载荷和循环横向载荷下进行测试。还应用分析方法来检查RC夹套柱的轴向载荷力矩相互作用在考虑夹克部分提供的限制效果并研究以原文中提出的基于性能的设计模型的适用性。测试结果表明,即使在高轴向载荷下,所发达的护套技术也具有提高缺陷柱的抗弯曲刚度,强度和延展性的良好潜力。无论轴向载荷水平如何,钢筋混凝土夹紧柱具有比使用延展性参数模型估计的延展性更高。因此,包括横向加强件的地震细节的夹套部分可以基于轴向载荷矩相互作用和延展性参数模型来保守设计缺陷的柱状的瞬时和延展性增强。

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