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Retrofitting of partially damaged reinforced concrete beam-column joints using various plate-configurations of CFRP under cyclic loading

机译:在循环荷载下使用CFRP的各种板构型对部分受损的钢筋混凝土梁柱节点进行改造

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This paper presents an experimental work on repair of partially damaged reinforced concrete beam- column joints using carbon fiber-reinforced plastics (CFRP) plates. The investigation carried out is mainly dedicated to study the behavior of repaired RC beam-column joints under cyclic loading with a variety of retrofitting schemes. Eight specimens were prepared and tested to investigate the repairing efficiency for improving strength-capacity, stiffness and behavior of partially damaged RC joints. The control specimen was tested up-to-failure under cyclic loading. Seven specimens were loaded up-to a certain load level which was about 80% of expected failure load (known as preload). Then, they were retested after repairing using various schemes of CFRP-plates. The results were examined through load versus drift-ratio; initial-stiffness of curve, ductility index and maximum load. Besides, strains in CFRP-plates were measured and the failure modes of the test specimens; due to crack-pattern and CFRP-debonding, were monitored. The results showed the important issue of repairing and enhancing the joint-performance and hence delaying premature debonding of the various CFRP-configurations. All repaired joints show improved strength, which reached almost the existing shear-strength of the beam-column joint. Hence, the resulted repaired joints enhanced a much larger strength-capacity than the reference joints. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文介绍了使用碳纤维增强塑料(CFRP)板修复部分受损的钢筋混凝土梁柱节点的实验工作。进行的研究主要致力于通过各种改造方案研究循环荷载作用下修复的RC梁柱节点的性能。准备并测试了八个样品,以研究修复效率,以改善部分受损的RC接头的强度-强度,刚度和行为。对照样品在循环载荷下进行了彻底测试。将七个试样加载到一定的载荷水平,该载荷水平约为预期破坏载荷(称为预载荷)的80%。然后,在使用各种方案的CFRP板进行修复后,对它们进行了重新测试。通过负载与漂移比对结果进行了检验;曲线的初始刚度,延展性指标和最大载荷。此外,测量了CFRP板中的应变并测试了试样的破坏模式。由于裂纹模式和CFRP脱粘,因此进行了监测。结果表明修复和增强接头性能并因此延迟各种CFRP构型的过早脱胶的重要问题。所有修复的接头均显示出更高的强度,几乎达到了梁柱接头的现有抗剪强度。因此,所得到的修复接头比参考接头具有更大的强度-能力。 (C)2018 Elsevier Ltd.保留所有权利。

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