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Effect of basalt microfibers on the shear response of short concrete beams reinforced with BFRP bars

机译:玄武岩微纤维对BFRP棒加固短混凝土梁剪切响应的影响

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This paper experientially investigates the effect of adding basalt microfibers to the concrete mix on the shear response of short beams reinforced longitudinally with Basalt Fiber Reinforced Polymer (BFRP) bars. The main objective is to study the feasibility of enhancing the shear capacity and cracking response of BFRP-RC deep beams due to the presence of microfibers. A total of eight beams with a length of 2000 mm and a crosssection of 150 mm x 260 mm each were cast for this purpose. Six beams were cast using basalt microfibers, one beam was cast using synthetic fibers and one was cast using plain concrete. The test parameters included shear span-to-depth ratio, longitudinal reinforcement ratio, concrete compressive strength, and the type of microfibers used in the concrete mix. Experimental results showed that the presence of basalt microfibers and synthetic fibers have a significant influence in enhancing the overall stiffness, toughness, and ultimate shear strength of the tested beams. The presence of basalt microfibers resulted in an increase in the maximum load carrying capacity by 42%. The experimental results are then compared with the strut-and-tie model (STM) predictions according to ACI-318-14. The constructed STM model resulted in a conservative prediction of the ultimate shear strength of tested beams.
机译:本文经验研究了用玄武岩纤维增强聚合物(BFRP)棒加强纵向增强的短梁剪切响应的混凝土混合物对混凝土混合的影响。主要目的是研究由于微纤维的存在,提高BFRP-RC深梁的剪切容量和开裂响应的可行性。为此目的施放了总长度为2000毫米的八个梁,横断150mm×260mm。使用玄武岩微纤维施放六个光束,使用合成纤维施放一个光束,使用普通混凝土铸造一个光束。测试参数包括剪切跨度与深度比,纵向增强率,混凝土抗压强度和混凝土混合物中使用的微纤维类型。实验结果表明,玄武岩微纤维和合成纤维的存在对于提高测试梁的总刚度,韧性和极限剪切强度具有显着的影响。玄武岩微纤维的存在导致最大载荷容量的增加42%。然后将实验结果与根据ACI-318-14的支柱和扎带模型(STM)预测进行比较。构造的STM模型导致保守预测测试梁的极限剪切强度。

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