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Behaviour of Hybrid Steel and FRP-Reinforced Concrete—ECC Composite Columns under Reversed Cyclic Loading

机译:循环荷载作用下混合钢和FRP-ECC复合柱的性能

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摘要

Fibre-reinforced polymer (FRP) is used widely in concrete structures owing to its noncorrosive, light-weight, nonmagnetic, and high tensile-strength properties. However, the FRP-reinforced concrete flexural member exhibits low ductility owing to the linear–elastic property of FRP reinforcement. Hybrid steel—FRP-reinforced concrete members exhibit good strength and ductility under flexure owing to the inelastic deformation of steel reinforcement. The existing investigations have focused on the mechanical behaviours of the hybrid steel—FRP-reinforced flexural members. Only few studies have been reported on the members under combined flexural and compression loads, such as columns, owing to the poor compressive behaviour of FRP bars. We herein propose a new type of hybrid steel—FRP-reinforced concrete—engineered cementitious composite (ECC) composite column with ECC applied to the plastic hinge region and tested it under reversed cyclic loading. The hybrid steel—FRP-reinforced concrete column was also tested for comparison. The influence of matrix type in the plastic hinge region on the failure mode, crack pattern, ultimate strength, ductility, and energy dissipation capacity, of the columns were evaluated systematically. We found that the substitution of concrete with ECC in the plastic hinge zone can prevent the local buckling of FRP bars efficiently, and subsequently improve the strength and ductility of the column substantially.
机译:纤维增强聚合物(FRP)由于其无腐蚀性,重量轻,无磁性和高拉伸强度特性而被广泛用于混凝土结构中。但是,由于FRP增强材料的线性弹性,FRP增强混凝土抗弯构件的延展性较低。混合钢-FRP增强的混凝土构件由于钢筋的非弹性变形而在弯曲下表现出良好的强度和延展性。现有的研究集中在混合钢-FRP增强的抗弯构件的力学性能上。由于FRP筋的抗压性能较差,只有很少的研究报道了在组合的弯曲和压缩载荷(例如圆柱)作用下的构件。我们在此提出一种新型混合钢-FRP增强混凝土-工程胶结复合材料(ECC)复合柱,并将ECC应用于塑料铰链区域,并在反向循环载荷下对其进行测试。还对混合钢-FRP钢筋混凝土柱进行了比较测试。系统地评估了塑料铰链区域中基质类型对柱的破坏模式,裂纹模式,极限强度,延性和能量耗散能力的影响。我们发现,在塑料铰链区中用ECC代替混凝土可以有效地防止FRP筋的局部弯曲,从而显着提高柱的强度和延性。

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