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Shear Behavior of Circular Concrete Members Reinforced with GFRP Bars and Spirals at Shear Span-to-Depth Ratios between 1.5 and 3.0

机译:GFRP筋和螺旋增强的圆形混凝土构件在剪切跨度与深度之比为1.5到3.0时的剪切行为

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In the last decade, the shear strength of concrete members with rectangular cross sections reinforced with fiber-reinforced polymers (FRPs) has received considerable attention. Yet no research seems to have investigated circular concrete members reinforced with FRP reinforcement under shear loads. This paper presents the results of an investigation of the shear strength and behavior of six circular concrete specimens reinforced with glass-FRP (GFRP) bars and spirals. The specimens, which measured 3,000 mm in length by 500 mm in diameter, were tested under four-point bending. The test parameters included the shear span-to-depth ratio (a/d) ranging from 1.5 to 3.0 and the GFRP spiral reinforcement ratio with different spiral spacings (100, 150, and 200 mm) and spiral diameters (13 and 15 mm). As designed, the specimens failed in shear due to GFRP spiral rupture or flexural-shear failure for the specimens with a/d > 2.5 and strut crushing combined with spiral rupture for the specimens with a/d < 2.5. The experimental results were compared to the current sectional models and the strut-and-tie model in codes and design guidelines as well as to the available analytical approach, which is based on the modified compression field theory. The comparison indicates that the shear capacity of FRP-reinforced concrete members with circular cross sections may be determined with the shear design provisions developed for rectangular sections within a variable degree of conservativeness. (C) 2016 American Society of Civil Engineers.
机译:在过去的十年中,矩形截面的混凝土构件的抗剪强度受到了纤维增强聚合物(FRP)的增强。然而,似乎没有研究研究在剪切载荷下用FRP加固的圆形混凝土构件。本文介绍了对玻璃纤维增​​强塑料(GFRP)钢筋和螺旋增强的六个圆形混凝土试样的剪切强度和性能的研究结果。在四点弯曲下测试长度为3,000 mm,直径为500 mm的样品。测试参数包括剪切跨度与深度之比(a / d)为1.5至3.0,以及具有不同螺旋间距(100、150和200 mm)和螺旋直径(13和15 mm)的GFRP螺旋增强比。 。按照设计,对于a / d> 2.5的试样,由于GFRP螺旋断裂或弯曲剪切破坏而导致试样剪切失败;对于a / d <2.5的试样,采用压杆破碎与螺旋断裂相结合的方式。将实验结果与规范和设计指南中的当前截面模型和拉杆-拉杆模型进行了比较,并与基于改进的压缩场理论的可用分析方法进行了比较。比较表明,具有圆形横截面的FRP增强混凝土构件的抗剪承载力可以通过在可变的保守度内为矩形截面制定的抗剪设计规定来确定。 (C)2016年美国土木工程师学会。

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