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Concrete beams with different arrangements of GFRP flexural and shear reinforcement

机译:GFRP抗弯抗剪布置不同的混凝土梁

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This paper presents experimental research on the flexural and shear behaviour of concrete beams reinforced with glass fibre reinforced polymer (GFRP) composite reinforcement. Three-point bending tests on shear critical concrete beams reinforced with GFRP longitudinal bars and GFRP stirrups are presented. The test variables were the size and spacing of closed loop stirrups as well as the size, amount, and arrangement of longitudinal reinforcement. Twelve beams were tested with four different stirrup arrangements and three different longitudinal reinforcement arrangements. Longitudinal bars were instrumented at mid-span and stirrups were instrumented at the straight and bent portions. The beams had a shear-span-to-effective-depth ratio of 2.5 and behaved like deep beams. The beams without stirrups failed in shear-tension while the beams with stirrups failed in shear-compression with no ruptured stirrups. Longitudinal reinforcement strains showed evidence of a tied arch mechanism. The analysis found diminishing increases in shear strength with increasing shear reinforcement ratio when failure occurred as a result of crushing of confined concrete.
机译:本文介绍了玻璃纤维增​​强聚合物(GFRP)复合材料增强混凝土梁的抗弯和抗剪性能的试验研究。提出了用GFRP纵向钢筋和GFRP箍筋加固的抗剪临界混凝土梁的三点弯曲试验。测试变量是闭环箍筋的尺寸和间距以及纵向钢筋的尺寸,数量和布置。用四个不同的箍筋布置和三个不同的纵向钢筋布置测试了十二个梁。在中跨处测量纵向钢筋,并在笔直和弯曲部分处测量箍筋。这些梁的剪切跨度与有效深度之比为2.5,其行为类似于深梁。没有箍筋的梁的剪切张力不合格,而带有箍筋的梁的剪切压缩失效,箍筋没有破裂。纵向钢筋应变显示出束缚机制的证据。分析发现,当承压混凝土碾压导致破坏时,抗剪强度会随着抗剪强度的增加而减小。

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