Shear strengthening of deficient RC deep beams using NSM FRP system: Experimental and numerical investigation

IF 1.3 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Materials Science-Poland Pub Date : 2024-05-27 DOI:10.2478/msp-2024-0012
Aref Abadel
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Abstract

It is essential to retrofit deep beams with shear inadequacies because these beams, although they have the same shear and flexural reinforcements as ordinary beams, are more susceptible to shear failure. Hence, it is of great significance to overcome the shear weaknesses in deep beams. This research paper aims to experimentally examine the effectiveness of near-surface mounted (NSM) carbon fiber reinforced polymer (CFRP) for retrofitting reinforced concrete (RC) deep beams subjected to shear forces. The study involved three different types of specimens. The first specimen was constructed with concrete throughout its span and included shear stirrups. The second specimen was divided into two halves, with one half lacking shear reinforcements and the other half having them. The third specimen had steel web reinforcement in one half of the span, while the other half was strengthened using NSM CFRP U-wrap strips and externally bonded horizontal CFRP strips. The proposed strengthening method significantly increased the shear strength of the deep beams, surpassing that provided by steel web reinforcement alone. Furthermore, the NSM CFRP strengthened specimen exhibited a change in failure mode from shear to flexural failure. In comparison to the control beam without stirrups, the beams strengthened with NSM CFRP U-wrap strips demonstrated an impressive 82% improvement in shear strength, while the beam with shear reinforcement showed a 23 % enhancement in load capacity. The proposed strengthened scheme is capable of enhancing the structural performance and load-carrying capacity effectively. A finite element model was generated utilizing ABAQUS software to simulate the behavior of the tested deep beams and verified against the experimental outcomes. The numerical models successfully predicted the behavior of the RC deep beams strengthened with NSM CFRP when compared to the experimental data.
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使用 NSM FRP 系统对有缺陷的 RC 深梁进行剪力加固:实验和数值研究
必须对剪力不足的深梁进行改造,因为这些梁虽然与普通梁具有相同的抗剪和抗弯配筋,但更容易发生剪切破坏。因此,克服深梁的抗剪弱点意义重大。本研究论文旨在通过实验研究近表面安装(NSM)碳纤维增强聚合物(CFRP)对受剪力作用的钢筋混凝土(RC)深梁的改造效果。研究涉及三种不同类型的试样。第一种试样的整个跨度都是混凝土结构,包括剪力箍筋。第二个试样分为两半,一半没有剪力钢筋,另一半有剪力钢筋。第三个试样的一半跨度使用钢腹板加固,另一半跨度使用 NSM CFRP U 型缠绕带和外部粘接水平 CFRP 带加固。所提出的加固方法大大提高了深梁的抗剪强度,超过了单独使用钢腹板加固所能达到的强度。此外,NSM CFRP 加固试样的破坏模式也从剪切破坏转变为挠曲破坏。与没有箍筋的对照梁相比,使用 NSM CFRP U 型缠绕带加固的梁的剪切强度提高了 82%,而使用剪切加固的梁的承载能力提高了 23%。所提出的加固方案能够有效提高结构性能和承载能力。利用 ABAQUS 软件生成了有限元模型来模拟测试深梁的行为,并与实验结果进行了验证。与实验数据相比,数值模型成功地预测了使用 NSM CFRP 加固的 RC 深梁的行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Materials Science-Poland
Materials Science-Poland MATERIALS SCIENCE, MULTIDISCIPLINARY-
自引率
18.20%
发文量
18
期刊介绍: Material Sciences-Poland is an interdisciplinary journal devoted to experimental research into results on the relationships between structure, processing, properties, technology, and uses of materials. Original research articles and review can be only submitted.
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