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Strengthening and Characterization of Existing Reinforced Concrete Beams for Flexure by Effective Utilization of External Steel Elements

机译:通过有效利用外钢元件的弯曲弯曲混凝土梁的加强与鉴定

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Strengthening of structural members is a common practice around the world that may arise due to deterioration of concrete with age or upgradation of design code. This paper aims to elucidate a technique used for strengthening of the reinforced concrete beam for flexural capacity by using externally welded steel angles and steel bars. For this motive, three beams were strengthened with external steel angles and three with external steel bars. The external strengthening steel elements were attached at the bottom of the beam with shear reinforcement. Control samples without external steel angles and steel bars for comparison purposes were also prepared. All reinforced concrete beams were first constructed using a concrete ratio of 1:2:4, and then external steel elements were added to existing flexural reinforcement by using a fillet weld with tee joints having thickness and length of 5/16" (7.9 mm) and 6" (152.4 mm), respectively. Fourth point loading criteria were used to investigate the flexural capacity of beams in positive bending. All beams were designed strong enough in shear, to resist the ultimate loads without shear failure. Test results indicated that beams strengthened with this technique have an average increase of 238% with steel angles and 106% with steel bars, in load-carrying capacity than control samples. Strengthened beams showed a uniform crack pattern. Moreover, the concrete cover made a good bond with existing concrete and was strong enough to withstand ultimate loads. Conclusively, the steel angles and steel bars can be used as an external strengthening material, to enhance the flexural capacity of reinforced concrete beams.
机译:加强结构成员是世界各地的常见做法,可能因与设计代码的年龄或升级的混凝土恶化而产生。本文旨在通过使用外部焊接钢角和钢筋来阐明用于加强弯曲混凝土梁的技术。对于这种动机,用外部钢角度和三个带有外部钢筋的三个光束加强。外部加强钢元件安装在带剪切钢筋的梁的底部。还制备了没有外部钢角度和用于比较目的的钢筋的控制样品。所有钢筋混凝土梁首先使用1:2:4的混凝土比构造,然后通过使用具有厚度和长度为5/16“(7.9mm)的T恤关节(7.9mm),将外钢元件添加到现有的弯曲加强件中。(7.9 mm)分别为6“(152.4毫米)。第四点装载标准用于研究积极弯曲的梁的弯曲能力。所有光束都设计得足够强,剪切,以抵抗没有剪切故障的终极载荷。测试结果表明,通过该技术强化的光束平均增加了238%,钢角度和钢筋的106%,负载承载能力比对照样品相比。加强梁显示出均匀的裂纹图案。此外,混凝土罩与现有混凝土采用良好的结合,足以承受最终负荷。最后,钢角和钢筋可用作外部强化材料,增强钢筋混凝土梁的弯曲能力。

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