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Shear Failure Analysis of Concrete Beams Reinforced with Newly Developed GFRP Stirrups

机译:新开发的GFRP箍筋加固混凝土梁的剪切破坏分析

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摘要

Even though the application of fiber reinforced polymer (FRP) as a concrete reinforcement becomes more common with various advantages, one of the inherent shortcomings may include its brittleness and on-site fabrication and handling. Therefore, the shape of FRP products have been limited only to a straight bar or sheet type. This study suggests a new technique to use glass fiber reinforced polymer (GFRP) bars for the shear reinforcement in concrete beams, and investigates its applicability. The developed GFRP stirrup was used in the concrete instead of ordinary steel stirrups. The experimental program herein evaluates the effectiveness of the GFRP stirrups with respect to different shear reinforcing ratios under three different shear span-to-depth testing schemes. At the same shear reinforcing ratio, the ultimate loads of the beams were similar regardless the shear reinforcing materials. Once a major crack occurs in concrete, however, the failure modes seemed to be relatively brittle with GFRP stirrups. From the measured strains on the surface of concrete, the shear stresses sustained by the stirrups were calculated and the efficiency of the GFRP stirrups was shown to be 91% to 106% depending on the shear span-to-depth ratio.
机译:尽管将纤维增强聚合物(FRP)用作混凝土增强材料具有各种优点,但这种方法的固有缺点之一可能包括其脆性以及现场制造和处理。因此,FRP产品的形状仅限于直型或片型。这项研究提出了一种使用玻璃纤维增​​强聚合物(GFRP)钢筋进行混凝土梁抗剪加固的新技术,并研究了其适用性。在混凝土中使用了发达的GFRP箍筋代替了普通的钢箍筋。本文的实验程序在三种不同的剪切跨度-深度测试方案下针对不同的剪切增强比评估了GFRP箍筋的有效性。在相同的剪力比下,无论剪力材料如何,梁的极限荷载都是相似的。但是,一旦混凝土中出现大裂缝,玻璃纤维增​​强筋箍筋的破坏模式就显得比较脆弱。根据混凝土表面测得的应变,计算出箍筋承受的剪切应力,根据剪切跨度与深度之比,GFRP箍筋的效率显示为91%至106%。

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