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首页> 外文期刊>Composite Structures >Experimental study on the effect of matrix on the flexural behavior of beams reinforced with Glass Fiber Reinforced Polymer (GFRP) bars
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Experimental study on the effect of matrix on the flexural behavior of beams reinforced with Glass Fiber Reinforced Polymer (GFRP) bars

机译:基质对玻璃纤维增​​强聚合物(GFRP)钢筋混凝土弯曲行为的实验研究

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摘要

This experimental work presents results on the effect of different concrete types on the flexural behavior and deflection of beams reinforced with Glass Fiber Reinforced Polymer (GFRP) bars. Four different types of concretes namely; ordinary Portland concrete (OPCC), fiber reinforced concrete (FRC), geopolymer concrete (GPC), and fiber reinforced geopolymer concrete (FRGC) were used. A total of eight beams were subjected to four-point static bending tests. The parameters studied were load capacities, deflection, and strain development in concrete and rebars, while cracking patterns and failure modes were also observed. All tested beams exhibit comparable flexural and deflection characteristics. The results indicate that GPC and FRGC beams were more effective for a GFRP reinforced system than ordinary concrete. The ACI 440-R1-06 equations gave conservative estimates for both the flexural capacity and the deflection of the members and therefore may be used irrespective of the concrete type. Finally, results from flexural capacities normalized for concrete strength, cross-section and reinforcement ratio of GFRP (rho(f)/rho(b)) indicate that increase in the rho(f)/rho(b) ratio does not proportionally increase the flexural strength of the beams.
机译:该实验工作提出了不同混凝土类型对用玻璃纤维增​​强聚合物(GFRP)棒加固的梁弯曲行为和偏转的影响。四种不同类型的混凝土即;普通波特兰混凝土(OPCC),纤维钢筋混凝土(FRC),地缘聚合物混凝土(GPC)和纤维增强地缘聚合物混凝土(FRGC)。共有八个光束进行四点静态弯曲试验。研究的参数是混凝土和钢筋中的负载能力,偏转和应变发育,同时还观察到破裂模式和破坏模式。所有测试梁都表现出相当的弯曲和偏转特性。结果表明,GPC和FRGC光束比普通混凝土更有效地对GFRP增强系统更有效。 ACI 440-R1-06等式对构件的弯曲能力和偏转产生保守估计,因此无论混凝土类型如何都可以使用。最后,对于用于混凝土强度的弯曲能力,GFRP的横截面和增强比率导致弯曲能力(Rho(F)/ Rho(B))表明Rho(F)/ Rho(B)比率的增加不成比重增加梁的弯曲强度。

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