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Experimental Study on FRP Tube Reinforced Concrete Columns under Different Loading Conditions

机译:不同荷载条件下FRP管式钢筋混凝土柱的试验研究

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The behavior of fiber-reinforced polymer (FRP) tube reinforced concrete (FTRC) columns under different loading conditions was investigated in this study. Four groups of 16 specimens were cast and tested. Specimens in the first group (the reference group) were reinforced with longitudinal steel bars and steel helices (Group REF). Specimens in the second group were reinforced with intact glass FRP tubes (Group IT). Specimens in the third group were also reinforced with intact glass FRP tubes. In addition, polymer grid was embedded into the concrete cover to reduce the cover spalling (Group ITG). Specimens in the fourth group were reinforced with perforated glass FRP tubes (Group PT). One specimen from each group was tested under concentric loading, one under 25-mm eccentric loading, one under 50-mm eccentric loading, and one under four-point loading. Results from the experimental study show that FRP tubes significantly increase the load-carrying capacity and ductility of FTRC specimens. Group ITG specimens performed better than the other groups of specimens. Experimental and analytical interaction (P - M) diagrams also show the enhanced performance of FTRC specimens. (C) 2016 American Society of Civil Engineers.
机译:研究了纤维增强聚合物(FRP)管增强混凝土(FTRC)柱在不同载荷条件下的行为。四组共16个样本进行了铸造和测试。第一组(参考组)中的标本用纵向钢筋和螺旋弹簧(REF组)增强。第二组样品用完整的玻璃纤维增​​强玻璃纤维管(IT组)加固。第三组样品也用完整的玻璃纤维增​​强玻璃纤维管增强。此外,聚合物网格被嵌入混凝土覆盖层中以减少覆盖层剥落(Group ITG)。第四组样品用玻璃钢穿孔玻璃纤维管(PT组)增强。每组一个样品在同心载荷下进行测试,一个在25mm偏心载荷下进行测试,一个在50mm偏心载荷下进行测试,并且在四点载荷下进行测试。实验研究的结果表明,FRP管显着提高了FTRC标本的承载能力和延展性。 ITG组样本的表现优于其他组样本。实验和分析相互作用(PM)图还显示了FTRC标本的增强性能。 (C)2016年美国土木工程师学会。

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