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The effect of transverse and flexural reinforcement on deflection and cracking of GFRP bar reinforced concrete beams

机译:横向和弯曲钢筋对GFRP钢筋混凝土梁挠曲和开裂的影响

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摘要

This paper investigates the flexural behavior, deflection, and cracking of concrete beams reinforced with GFRP bars. For this purpose, 20 simply supported concrete beams with the cross-section of 250 x Faculty of Engineering, Ferdowsi University of Mashhad, Mashhad, Iran250 mm and length of 2200 mm were constructed and tested. The parameters studied in this research are the amount and arrangement of transverse and flexural reinforcement. The results show that increasing the amount of transverse reinforcement of similar beams results in a significant increase in load-carrying capacity and a decrease in the crack widths and mid-span deflection until service load. Moreover, applying a small-diameter transverse reinforcement under the same reinforcement ratio showed a stronger effect on increasing the load-carrying capacity. Furthermore, using a small-diameter transverse and tensile reinforcement led to a higher effect on decreasing the crack widths. The average experimental-to-predicted load-carrying capacity ratio of beams with high flexural reinforcement ratio is slightly more than that of beams with low flexural reinforcement ratio.
机译:本文研究了GFRP筋加固的混凝土梁的挠曲性能,挠度和裂缝。为此目的,构造并测试了20根横截面为250 x伊朗马什哈德马什哈德马什哈德的费多西大学工程学院的简支混凝土梁,其长度为2 mm,长度为250 mm。在这项研究中研究的参数是横向和弯曲钢筋的数量和布置。结果表明,增加相似梁的横向配筋量会导致承载能力显着增加,直至服务荷载之前,裂缝宽度和中跨挠度减小。此外,在相同的配筋率下施加小直径的横向配筋对增加承载能力具有更强的作用。此外,使用小直径的横向和拉伸钢筋对减小裂缝宽度具有更高的效果。高抗弯增强比梁的平均实验预测承载力比略高于低抗弯增强比梁的平均承载能力比。

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