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Cyclic Response of Rectangular RC Columns with Bond-Damaged Zones Repaired Using Steel or CFRP Confinement

机译:用钢或CFRP约束修复带粘结损伤区域的矩形RC柱的循环响应

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This paper presents the results of an experimental investigation undertaken for evaluating the cyclic lateral load-drift response of rectangular reinforced concrete (RC) columns which were damaged due to large drift reversals, but then repaired for upgrading the bond strength of the spliced reinforcement within the critical hinging region. The original specimens consisted of full-scale unconfined and fiber-reinforced polymer (FRP) confined columns having a relatively high section aspect ratio of 2.0. These original specimens were subjected to large drift reversals until complete bond degradation of the spliced reinforcement within the hinging zone and complete loss of flexural strength of the columns8. The repair procedure consisted of removing the deteriorated concrete within the damaged/splice zone and casting new concrete. Two types of concrete confinement for improving the bond strength and flexural capacity were investigated and compared, namely, internal confinement by transverse steel ties and external confinement using carbon fiber-reinforced polymer (CFRP) jackets. It was found that repairing the bond-damaged zone through concrete confinement leads to substantial regain of flexural strength up to or exceeding the strength of the original specimens, lower structural damage associated with concrete fracturing and bond degradation, and considerable improvement of the energy dissipation capacity under cyclic loading. Confinement by external FRP jackets was relatively more effective than confinement by internal steel ties. However, unlike columns with continuous reinforcement, columns with spliced reinforcement within the hinging region experienced significant bond and strength degradation beyond drift ratios between 3 and 4%, irrespective of the type and amount of confinement used. The experimental results are discussed, and a design expression for estimating the thickness of the FRP jacket required for seismic bond strengthening is presented and compared with the test data.
机译:本文介绍了一项实验研究的结果,用于评估矩形钢筋混凝土柱的周期性侧向荷载-漂移响应,这些钢筋柱由于大的漂移逆转而受损,但为了提高拼接钢筋在桥墩内的粘结强度而进行了修复。关键的铰链区域。原始标本由具有2.0的较高截面纵横比的全尺寸无限制和纤维增强聚合物(FRP)约束柱组成。这些原始样本经受了较大的漂移逆转,直到铰接区内拼接钢筋的粘结完全降解,并且柱体的抗弯强度完全丧失8。维修程序包括清除损坏/拼接区域内的劣化混凝土并浇筑新混凝土。研究和比较了两种用于提高粘结强度和抗弯能力的混凝土围墙,即,通过横向钢筋束缚的内部围墙和使用碳纤维增强聚合物(CFRP)护套的外部围墙。结果发现,通过混凝土约束修复粘结破坏区域可导致弯曲强度大幅度恢复,甚至达到或超过原始试样的强度,降低与混凝土破裂和粘结降解相关的结构破坏,并显着提高能量消散能力在周期性负载下。外部FRP护套的约束比内部钢带约束的约束相对更有效。但是,与具有连续钢筋的柱子不同,在铰接区内具有拼接钢筋的柱子发生了明显的粘结和强度下降,超过了3-4%的漂移率,而与所使用的约束类型和约束量无关。讨论了实验结果,并给出了估算抗震粘结所需的FRP护套厚度的设计表达式,并将其与测试数据进行了比较。

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