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Torsional improvement of reinforced concrete beams using ultra high-performance fiber reinforced concrete (UHPFC) jackets - Experimental study

机译:使用超高性能纤维增强混凝土(UHPFC)护套的钢筋混凝土梁的扭转改进-实验研究

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The efficiency of using ultra high-performance fiber reinforced concrete (UHPFC) to strengthen reinforced concrete (RC) beams under torsion is investigated. The significant advantages of the applied UHPFC jackets are (i) its high compressive and tensile strength and (ii) its excellent rheological properties led to facilitate concrete casting in strengthening works, and that is of high interest to the researchers and practice engineers. This study includes experimental results of all specimens with different types of configurations and thickness of UHPFC. Ten beams with only longitudinal reinforcement (i.e., without transverse reinforcement) are strengthened with UHPFC on two, three, and four sides. One beam with the same reinforcement ratio but without UHPFC is used as the control beam. As well as, finite element analysis was conducted in tandem with experimental work to compare and justify the effective of repair technique. Results show the effectiveness of the proposed technique at ultimate torque for different beam strengthening configurations, crack patterns, and behavioral curves. Strengthened RC beams four sides with a thin layer of UHPFC exhibit an enhanced torsional behavior and higher capacity than strengthened beams three and two sides. The UHPFC can generally be used as an effective external torsional reinforcement for RC beams without stirrups. It was noted that the behavior of the beams strengthen with UHPFC jackets are better than the control beams. The use of UHPFC had effect in delaying the growth of crack formation. The finite element analysis is a good agreement with the experimental data. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究了在扭转作用下使用超高性能纤维增强混凝土(UHPFC)加固钢筋混凝土(RC)梁的效率。所应用的UHPFC护套的显着优势是(i)高抗压强度和(ii)优异的流变性能,可促进混凝土在加固工程中的浇筑,这对于研究人员和实践工程师而言非常重要。这项研究包括所有具有不同类型构造和厚度的UHPFC的样品的实验结果。用UHPFC在两侧,三侧和四侧加固了仅具有纵向钢筋(即没有横向钢筋)的十根梁。一根具有相同增强比但没有UHPFC的梁用作控制梁。同时,还结合实验工作进行了有限元分析,以比较和证明修复技术的有效性。结果表明,对于不同的梁加强配置,裂缝模式和行为曲线,该技术在极限扭矩下的有效性。带有UHPFC薄层的四侧加固RC梁比三侧和两侧加固梁表现出增强的扭转性能和更高的承载能力。 UHPFC通常可以用作不带箍筋的RC梁的有效外部抗扭钢筋。值得注意的是,用UHPFC护套加强的梁的性能优于控制梁。使用UHPFC可以延缓裂纹形成的增长。有限元分析与实验数据吻合良好。 (C)2015 Elsevier Ltd.保留所有权利。

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