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Shear behavior of basalt FRC beams reinforced with basalt FRP bars and glass FRP stirrups: Experimental and analytical investigations

机译:玄武岩FRC梁的剪切行为用玄武岩FRP棒和玻璃FRP STIRRUPS:实验和分析研究

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摘要

This study investigated the shear behavior of basalt fiber reinforced concrete (BFRC) beams reinforced with basalt (B) and glass (G) fiber-reinforced polymers (FRP) bars and stirrups, respectively. Fourteen beams were tested under four-point loading up to failure. The investigated parameters were the volume fractions (Vf) of basalt macro-fibers (BMF), the reinforcement ratio, the shear-span-to-depth ratio, and the stirrup spacing. An enhancement in shear capacities of the tested beams was observed with the increase of the Vf of the added BMF from 0 to 1.5%. The shear capacities of the tested beams were also improved as their reinforcement ratios increased. On the other hand, there was a significant reduction in the ultimate strengths and stiffnesses of beams with GFRP stirrups compared to their counterpart beams with steel stirrups. The experimental capacities of the tested beams and experimental results of 178 FRP-RC beams available in the literature were compared to those predicted by existing models and code equations. A good correlation between the predicted and experimental results was obtained using the equations of CAN/CSA-S806-12. A proposed modified shear equation incorporating CAN/CSA-S806-12 provisions and a model suggested by Al-Ta'an and Al-Feel predicted the shear design capacities of BFRP-BFRC reinforced concrete beams with reasonable accuracy.
机译:本研究研究了玄武岩纤维钢筋混凝土(BFRC)梁的剪切行为分别用玄武岩(B)和玻璃(G)纤维增强聚合物(FRP)棒和搅拌纤维增强。在四点加载下测试了十四梁梁。研究的参数是玄武岩宏观纤维(BMF)的体积分数(VF),增强比,剪切 - 跨度与深度比和搅拌间隔。观察到测试梁的剪切容量的增强,随着添加的BMF的VF的增加,从0到1.5%的增加。由于其增强比率增加,测试梁的剪切容量也得到了改善。另一方面,与具有钢箍筋的对应梁相比,通过GFRP搅拌的梁的极限强度和刚度显着降低。将文献中可用的178个FRP-RC光束的测试梁和实验结果的实验​​能力与现有模型和代码方程预测的那些进行比较。使用CAN / CSA-S806-12的等式获得预测和实验结果之间的良好相关性。包含CAN / CSA-S806-12规定的提出的修改剪切方程和Al-Ta'an和Al-Feel建议的模型预测了具有合理精度的BFRP-BFRC钢筋混凝土梁的剪切设计能力。

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