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CFRP confinement in retrofitted RC columns via CSB technique under reversed lateral cyclic loading

机译:在反向循环荷载作用下,通过CSB技术将CFRP限制在钢筋混凝土柱中

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This paper reports the results on an experimental investigation on the efficiency of confinement with carbon fiber reinforced polymer (CFRP) in retrofitting square reinforced concrete (RC) columns. The study was designed to evaluate the effect of the recently developed corner strip-batten (CSB) method on the seismic behavior of RC columns. In the CSB method, FRP battens are bonded, similar to flat coupons, at the sides of the section while each adheres on the CFRP corner strips at the two ends. For the purposes of this study, five large-scale RC columns were subjected to constant axial and cyclic lateral loads. The main parameter examined was the method employed for confining the columns. The RC columns were investigated in terms of their failure mode, hysteretic and envelope curve, enhanced lateral strength and ductility, equivalent damping ratio, stiffness degradation, and energy dissipation. The results indicated that RC columns retrofitted with CFRP composites exhibited a ductile behavior under cyclic lateral loading. Furthermore, seismic loading tests revealed that the transverse FRP sheets applied through recently developed CSB technique at the potential plastic hinge areas led to considerable enhancements in lateral strength, energy dissipation, and ductility. This is evidenced by enhancements of 51.6%, 30.3%, 27.2% and 24.6%, respectively, in the ductility, equivalent viscous damping ratio, energy dissipation, and lateral strength of columns retrofitted via the CSB technique, relative to the control column.
机译:本文报告了对碳纤维增强聚合物(CFRP)围堵改造方形钢筋混凝土(RC)柱的效率进行实验研究的结果。该研究旨在评估最近开发的角条式压条(CSB)方法对RC柱的抗震性能的影响。在CSB方法中,类似于平板试样,在截面的侧面粘结FRP板条,而每个板条则在两端都粘结在CFRP角条上。出于本研究的目的,五个大型RC柱承受恒定的轴向和循环侧向载荷。检查的主要参数是用于限制色谱柱的方法。研究了RC柱的破坏模式,滞后曲线和包络线,增强的侧向强度和延展性,等效阻尼比,刚度降低和能量耗散。结果表明,用CFRP复合材料加固的RC柱在循环侧向荷载下表现出延性。此外,地震荷载测试表明,通过最新开发的CSB技术在潜在的塑料铰链区域使用的横向FRP板导致横向强度,能量耗散和延展性显着提高。相对于对照色谱柱,通过CSB技术改造的色谱柱的延性,等效粘性阻尼比,能量耗散和侧向强度分别提高了51.6%,30.3%,27.2%和24.6%,这证明了这一点。

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