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Flexural Behavior and Ductility of Concrete Beams Strengthened with Near-Surface Mounted GFRP Bars

机译:附近安装GFRP棒强化混凝土梁的弯曲行为和延展性

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The objective of this study is to investigate the flexural behaviors and ductility of reinforced concrete beam with near-surface mounted (NSM) GFRP bars. A total of 5, simply supported rectangular cross-section beams strengthened with NSM GFRP bars and two control beams are tested in this paper. The mode of failure, load-deflection relationship, strain distributions along the height of the beam on mid-span cross-section, and ductility of the beams are analyzed. The studies indicate that the yield and ultimate load have a significant increase compared with the control specimen. Especially, the ultimate load has a more measurable improvement than the yield load. The strain distribution along the height of specimen shows a clear nonlinear characteristic as a result of the crack propagating and steel yield. Also, the studies show that GFRP bars has played an important role in the flexural capacity of the strengthened beam during the stage from the yield to the failure of the beam. Besides, the strengthened beam is considered to be ductile using the displacement ductility index.
机译:本研究的目的是探讨钢筋混凝土梁的弯曲行为和延展性,近表面安装(NSM)GFRP棒。在本文中,总共5个简单地支持的矩形矩形横截面和两个控制梁的连接。分析了故障模式,载荷偏转关系,沿着中跨度横截面上的光束高度的应变分布以及梁的延展性。研究表明,与对照样品相比,产量和最终载荷具有显着的增加。特别是,最终负载具有比屈服载荷更能可测量的改善。沿标本高度的应变分布显示出由于裂纹传播和钢产率而明显的非线性特性。此外,研究表明,GFRP条在阶段在梁的级别期间在增强光束的弯曲能力中发挥了重要作用。此外,使用位移延展性指数认为增强的光束被认为是延展性。

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