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Prediction of shear behavior of steel fiber-reinforced rubberized concrete beams reinforced with glass fiber-reinforced polymer (GFRP) bars

机译:用玻璃纤维增​​强聚合物加固钢纤维增强橡胶混凝土梁剪切行为的预测(GFRP)棒

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摘要

A combination of fiber-reinforced polymer (FRP) reinforcing bars and steel fibers can be employed in locations of a structure with reinforcement congestion instead of the conventional combination of steel rebars and stirrups. In this study, first, the shear performance of the FRP bar-reinforced concrete beams containing steel fibers and crumb tire rubber without shear reinforcement was evaluated, and then an analytical model was proposed to predict their shear capacity and achieve a relationship between the first cracking moment and the shear capacity. Furthermore, an empirical equation was derived from the experimental data of 30 beams of the present research together with a database extracted from the results reported in other research to calculate the share of concrete in the shear capacity of this type of beam. Through evaluating the proposed equation against those given by different codes and those developed by other researchers, it was revealed that most existing shear strength prediction equations give an underestimated value for this parameter in beams having FRP reinforcing bars, while the present equation provides more accurate results. These results make the proposed model suitable for accurately designing FRP bar-embedded concrete beams containing steel fibers and crumb tire rubber.
机译:纤维增强聚合物(FRP)加强棒和钢纤维的组合可用于具有钢筋拥塞的结构的位置,而不是钢钢筋和搅拌器的常规组合。在本研究中,首先,评估了含有钢纤维和碎屑轮胎橡胶的FRP钢筋混凝土梁的剪切性能,并提出了一种分析模型来预测其剪切能力并在第一次开裂之间实现关系时刻和剪切能力。此外,从其他研究中报告的结果中提取的数据库中,从本研究的30个梁的实验数据衍生出经验性方程,以计算这种类型梁的剪切容量的混凝土的份额。通过评估所提出的等式对不同代码给出的那些等式以及由其他研究人员开发的那些,据揭示了大多数现有剪切强度预测方程给出了具有FRP加强条的光束中该参数的低估值,而当前方程提供了更准确的结果。这些结果使提出的模型适用于准确地设计含有钢纤维和碎屑轮胎橡胶的FRP嵌入式混凝土梁。

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