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Flexural performance of highly reinforced composite beams with ultra-high performance fiber reinforced concrete layer

机译:高性能纤维钢筋混凝土层高度增强复合梁的弯曲性能

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The study aimed to obtain the composite beams with high flexural capacity by using the high compressive strength and deformation capacity of Ultra -High Performance Fiber Reinforced Concrete (UHPFRC). For this purpose, the composite RC beams consisting of UHPFRC layer in the compressive side and Normal Strength Concrete (NSC) in the tensile side were produced and the four -point bending tests were carried out on the beams. By making parametric study for the ratio of tensile reinforcements (ranging from 1.8% to 5.0%), highest ratio where sufficient ductility can be acquired in the beams were determined. Two different thicknesses (one -fifth of the beam height/one-third of the beam height) of UHPFRC layer were applied in the compressive side of the composite beams in order to determine the appropriate thickness. The flexural behavior characteristics (ducti- lity, capacity, stiffness) of the composite beams were evaluated by comparing the pure NSC beams (reference beams) with the same properties. With the use of UHPFRC in the compressive side of the beams, significant advantages have been acquired in ductility, flexural capacity and stiffness compared to the NSC beams. However, the main advantage of the composite application was that it allows the use of very high amount of tensile reinforcement in the beam. The study indicated that it was possible to increase tensile reinforcement ratio of the composite beams up to 5% without using compressive reinforcement. Thus, the ductile composite beams with high flexural capacity were produced with the use of economical amount of UHPFRC. The UHPFRC layer thickness of one-third of the beam height was appropriate for the overall flexural performance at this type of composite beam.
机译:该研究旨在通过使用超高效纤维钢筋混凝土(UHPFRC)的高抗压强度和变形容量来获得具有高弯曲能力的复合梁。为此目的,制备了由压缩侧和正常强度混凝土(NSC)中的UHPFRC层组成的复合RC光束,并在梁上进行四点弯曲试验。通过参数化研究拉伸增强比(范围为1.8%至5.0%),确定了在光束中获得足够延展性的最高比率。在复合梁的压缩侧施加UHPFRC层的两个不同厚度(光束高度/三分之一的光束高度的一个 - 三分之一),以确定适当的厚度。通过将具有相同性质的纯NSC梁(参考光束)进行比较来评估复合梁的弯曲行为特征(仪表,容量,刚度)。通过在梁的压缩侧使用UHPFRC,与NSC光束相比,在延展性,弯曲能力和刚度中获得了显着的优点。然而,复合应用的主要优点是它允许在光束中使用非常大量的拉伸加强件。该研究表明,在不使用压缩加强件的情况下,可以增加复合梁的拉伸加固比率高达5%。因此,利用经济数量的UHPFRC生产具有高弯曲能力的延性复合梁。梁高度的三分之一的UHPFRC层厚度适用于这种类型的复合梁的整体弯曲性能。

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