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Retrofitting of shear strength self-compacting reinforced concrete deep beams with FRP

机译:FRP加固抗剪自密实钢筋混凝土深梁

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Experimental program were carried out to investigate the behavior of self-compacting reinforced concrete deep beams retrofitting with carbon fiber reinforced polymer (CFRP). Six simply supported deep beams were tested under symmetrically two point loads, three beams were tested up to failure without strengthening as a control beams with different shear span to effective depth ratio (a/d) while the other two beams were loaded up to 60% from the ultimate load of control beams for each a/d ratio and then retrofitted by the same configuration of CFRP to study the effect of a/d ratio on the properties of deep beams retrofitted. a/d for tested beams were (0.8, 1, 1.2). Study was focused on determining failure loads, cracking loads, failure modes, load midspan deflection. All the beams had the same compressive strength, overall dimensions and flexural and shear reinforcement. It was concluded that using this retrofitted method is very efficient and a gain in the ultimate load capacity of the deep beams was obtained also the results showed that when a/d ratio increase from 0.8 to 1.2, the ultimate load was decrease by 25% and midspan deflection was increased approximately at all load stages for control and retrofitted beams.
机译:进行了实验程序,以研究碳纤维增强聚合物(CFRP)加固自密实钢筋混凝土深梁的性能。在对称的两点荷载下测试了六个简单支撑的深梁,对三根梁进行了测试直至破坏,而没有将其作为具有不同剪切跨度至有效深度比(a / d)的控制梁进行加固,而其他两根梁的载荷高达60%从控制梁的每个a / d比率的极限载荷开始,然后通过相同配置的CFRP进行改装,以研究a / d比率对改装后深梁性能的影响。测试光束的a / d为(0.8,1,1.2)。研究重点是确定破坏载荷,裂纹载荷,破坏模式,载荷跨度挠度。所有梁都具有相同的抗压强度,整体尺寸以及抗弯和抗剪强度。得出的结论是,使用这种改进方法非常有效,并且获得了深梁的极限载荷能力的增加,结果还表明,当a / d比从0.8增大到1.2时,极限载荷减小了25%,在控制梁和翻新梁的所有载荷阶段,中跨挠度大约都增加了。

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