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Flexural behavior of basalt fiber-reinforced concrete slab strips reinforced with BFRP and GFRP bars

机译:BFRP和GFRP筋增强玄武岩纤维混凝土板的抗弯性能。

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This research investigates experimentally and analytically a novel one-way slab system reinforced with either basalt fiber-reinforced polymer (BFRP) or glass fiber-reinforced polymer (GFRP) longitudinal bars embedded in fiber-reinforced concrete (FRC) incorporating basalt macro-fibers (BMF). Twelve one-way concrete slab strips were prepared and tested to failure under four-point loading configuration. The investigated parameters included the type of fiber-reinforced polymer bars (BFRP and GFRP), the longitudinal reinforcement ratio rho(f)(1.4 and 2.8 rho(bf), where rho(bf) is the balanced reinforcement ratio), and the volume fraction of the fibers added (0, 0.5, 1, and 2% per volume). The test results demonstrated the promise of BMF to enhance the flexural performance of the tested slab strips in terms of ductility and load-carrying capacities. The formulations of different available codes and design guidelines were used to predict the test results. Comparison between the experimental and predicted results showed the adequacy of the models to predict the flexural performance of the tested slab strips. The findings of this study demonstrated the potential of using the BMF as alternatives to conventional fibers in flexural concrete members.
机译:这项研究通过实验和分析方法研究了一种新型的单向平板系统,该系统由玄武岩纤维增强聚合物(BFRP)或玻璃纤维增​​强聚合物(GFRP)纵向钢筋增强,该纵向钢筋嵌入玄武岩大纤维( BMF)。制备了十二个单向混凝土板条,并在四点荷载配置下测试了其破坏。研究的参数包括纤维增强聚合物棒的类型(BFRP和GFRP),纵向增强比rho(f)(1.4和2.8 rho(bf),其中rho(bf)是平衡增强比)和体积所添加纤维的比例(每体积0、0.5、1和2%)。测试结果证明了BMF有望在延展性和承载能力方面提高被测试板坯的弯曲性能。使用了不同的可用代码和设计准则来预测测试结果。实验结果和预测结果之间的比较表明,该模型足以预测被测板坯的弯曲性能。这项研究的结果表明,在抗弯混凝土构件中使用BMF替代传统纤维的潜力。

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