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Experimental study on the flexural behavior of concrete beams reinforced with bundled hybrid steel/FRP bars

机译:混合钢/ FRP筋加固混凝土梁抗弯性能的试验研究。

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摘要

Fiber-reinforced polymers (FRPs) are widely used in the strengthening of concrete structures due to their light weight, high strength, and good durability. For precast concrete structures, bundled FRP/steel bars can substantially ease the construction process. In this paper, experimental studies were conducted on five concrete beams with different types of bundled reinforcements. The test results showed that all the beams exhibited concrete crushing failure modes after the steel bar yielded, and the plastic development of the steel bar was restrained by the elastic FRP bar. As the reinforcement concentration increased, the bond behavior between the longitudinal reinforcement and the surrounding concrete decreased; the postcracking stiffness and crack quantity of the corresponding concrete beam decreased, whereas the crack width increased. Both the initial stiffness and postyield stiffness of the concrete beam with 3-bar bundles were approximately 50% of that of the beam with double-bar bundles. The displacement ductilities of all the concrete beams were greater than six. Due to the differences in the bond behavior, the ultimate displacements of the beams with 3-bar bundles and 6-bar bundles were approximately 1.6 and 1.9 times the ultimate displacement of the beam with single-bar reinforcement, respectively.
机译:纤维增强聚合物(FRP)重量轻,强度高,耐久性好,因此广泛用于混凝土结构的加固。对于预制混凝土结构,捆绑的FRP /钢筋可以大大简化施工过程。在本文中,对五种不同类型的钢筋束混凝土梁进行了试验研究。试验结果表明,钢筋屈服后,所有梁均表现出混凝土压溃破坏模式,弹性FRP筋抑制了钢筋的塑性发展。随着钢筋浓度的增加,纵向钢筋与周围混凝土之间的粘结性能降低。相应混凝土梁的开裂后刚度和开裂量减小,而开裂宽度增加。具有三杆束的混凝土梁的初始刚度和屈服后刚度均约为具有双杆束的混凝土梁的初始刚度和屈服后刚度。所有混凝土梁的位移延性均大于六。由于粘结行为的差异,带有3根杆束和6根杆束的梁的最终位移分别约为带单根钢筋的梁的最终位移的1.6倍和1.9倍。

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