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Shear Behavior of Hybrid Fiber Reinforced Concrete Deep Beams

机译:混杂纤维混凝土深梁的抗剪性能

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摘要

Hybrid fiber reinforced concrete (HFRC) is based on a multilevel-reinforcement material design that improves both the compressive strength and tensile strength. Investigations of the mechanical performance of HFRC with two types of steel fibers were conducted experimentally. The investigated parameters were the volume fractions of the short steel fibers and long steel fibers. The compressive strength, tensile strength, and flexural strength of the HFRC were researched. The group with volume fractions of 1.5% for the long steel fibers and 0.5% for the short steel fibers exhibited the best flexural strength. The synergetic effect clearly was improved by combining different types of steel fiber. Four HFRC deep beams and one reinforced concrete (RC) deep beam were conducted to consider the shear behavior of these beams. The primary variables included the volume fraction of steel fibers and the web reinforcement ratio. The shear behavior was evaluated based on the cracking pattern, load-deflection behavior, and shear capacity. All of the beams failed due to the formation of diagonal cracks. The results indicated that hybrid fibers contribute greatly to the shear behavior of deep beams. The hybrid fibers led to the formation of multiple diagonal cracks in the deep beams and enhanced the damage tolerance. With the same web reinforcement ratio, the ultimate load and deformation of the HFRC deep beams were better than those of the RC deep beam.
机译:混合纤维增强混凝土(HFRC)基于多级增强材料设计,可提高抗压强度和抗拉强度。实验研究了两种类型的钢纤维对HFRC的力学性能。研究的参数是短钢纤维和长钢纤维的体积分数。研究了HFRC的抗压强度,抗拉强度和抗弯强度。长钢纤维的体积分数为1.5%,短钢纤维的体积分数为0.5%的组表现出最佳的弯曲强度。通过组合不同类型的钢纤维,明显提高了协同作用。考虑了四根HFRC深梁和一根钢筋混凝土(RC)深梁的剪力特性。主要变量包括钢纤维的体积分数和纤维网增强比。基于开裂模式,载荷挠度行为和剪切能力评估剪切行为。由于形成了对角裂纹,所有的梁都失效了。结果表明,杂化纤维对深梁的剪切行为有很大贡献。杂化纤维导致在深梁中形成多个对角裂纹,并增强了损伤耐受性。在相同腹板配筋率的情况下,HFRC深梁的极限荷载和变形效果优于RC深梁。

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