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Axial and flexural behavior of unreinforced and FRP bar reinforced circular concrete filled FRP tube columns

机译:FRP筋和无筋FRP钢筋混凝土圆管的轴向和挠曲性能

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摘要

Fiber Reinforced Polymer (FRP) composites have emerged as a viable alternative of steel reinforcement due to higher ultimate tensile strength to weight ratio and corrosion resistance of FRP composites. Concrete Filled Fiber Reinforced Polymer Tube (CFFT) technique for new column construction has attracted significant research attention. This paper investigated the axial and flexural behavior of concrete filled Carbon FRP (CFRP) tube columns with and without CFRP bar and concrete filled Glass FRP (GFRP) tube columns with and without GFRP bar. The test results of 16 circular CFFT and four steel Reinforced Concrete (RC) specimens of 203-205 mm diameter and 800-812 mm height have been reported in this paper. The test results showed a larger reduction in the confinement effectiveness of FRP tube than steel helices under increasing applied load eccentricity. FRP bar reinforced CFFT specimens exhibited higher axial loads, flexural loads, and deformations at peak loads than unreinforced CFFT and steel RC specimens. Experimental axial load-bending moment interaction curves of tested specimens also showed the improved performance of FRP bar reinforced CFFT specimens.
机译:纤维增强聚合物(FRP)复合材料由于具有更高的极限拉伸强度与重量比和FRP复合材料的耐腐蚀性而成为钢增强材料的可行替代品。用于新柱构造的混凝土填充纤维增强聚合物管(CFFT)技术引起了重要的研究关注。本文研究了带或不带CFRP钢筋的碳纤维混凝土(CFRP)管柱和带或不带GFRP钢筋的玻璃纤维混凝土(GFRP)管柱的轴向和挠曲性能。本文报道了16个圆形CFFT和4个直径为203-205毫米,高度为800-812毫米的钢筋混凝土(RC)标本的测试结果。试验结果表明,在增加的应用载荷偏心率下,FRP管的约束效果比钢制的螺旋管有更大的减小。与未增强的CFFT和钢筋混凝土RC样品相比,FRP钢筋CFFT样品表现出更高的轴向载荷,挠曲载荷和峰值载荷下的变形。试验样品的轴向轴向弯曲弯矩相互作用曲线也显示出FRP筋增强CFFT样品的改进性能。

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