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Shear behavior of rectangular beams strengthened with either carbon or steel fiber reinforced polymers

机译:用碳或钢纤维增强聚合物强化矩形梁的剪切行为

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The aim of this study is to upgrade the shear capacity of reinforced concrete (R/C) beams strengthened with either Carbon (CFRP) or Steel (SRP) fiber Reinforced Polymers with strips having the form of either closed or open hoop external transverse reinforcement. This investigation also includes the use an anchoring device. Seven prototype specimens in need of shear strength upgrade were tested having a span of 3000mm. The strengthened R/C beams along with a non-strengthened control R/C beams were tested monotonically under four point bending loading conditions. The experimental results indicate that the shear failure of the closed hoop strengthened beams is accompanied with the tensile fracture of the CFRP/SRP strips together with an increase in the shear capacity. A considerable increase in the shear strength was observed when open hoop CFRP/SRP strips with no anchoring were used; however, the debonding of these strips posed a limitation to this upgrade. When these open hoop CFRP/SRP strips were provided with anchoring devices the shear strength of the R/C beams was further increased and the shear failure was accompanied this time by either the fracture of the CFRP/SRP strips or the failure of the anchoring system. In conclusion, a shear strengthening system for R/C beams utilizing open hoop CFRP/SRP strips with properly designed anchoring it is easily applicable, it increases significantly the shear capacity of such R/C beams and it exploits at the same time the high tensile strength of these fiber polymer materials in a cost effective way. An analytical procedure used to predict the shear strength for of such R/C beams yielded good comparison with the measured values.
机译:本研究的目的是提高钢筋混凝土(R / C)光束的剪切容量,其用碳(CFRP)或钢(SRP)纤维增强聚合物强化,其中具有封闭或开口外部横向加强的形式的条带。该研究还包括使用锚定装置。测试需要剪切强度升级的七种原型标本,其跨度为3000mm。在四点弯曲的负载条件下单调,在四点弯曲的加载条件下进行强化的R / C光束以及非加强的控制R / C光束。实验结果表明,封闭的环箍强化梁的剪切失效伴随着CFRP / SRP条带的拉伸断裂,随着剪切容量的增加。当使用没有锚定的开放式CFRP / SRP条带时观察到剪切强度相当大的增加;但是,这些条带的剥离对此升级提出了限制。当具有锚定装置提供锚定装置时,r / c光束的剪切强度进一步增加,并且剪切失效通过CFRP / SRP条带的骨折或锚固系统的故障伴随着剪切失效。总之,利用开放式环路CFRP / SRP条带采用适当设计的锚固梁的剪切强化系统易于适用,它可以显着增加这种R / C光束的剪切容量,并同时利用高拉伸这些纤维聚合物材料的强度以成本效益的方式。用于预测这种R / C光束的剪切强度的分析过程产生了与测量值的良好比较。

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