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Bond Behaviour of FRP Reinforcing Bars in High-Strength Steel Fibre-Reinforced Concrete

机译:FRP钢筋在高强度钢纤维混凝土中的粘结行为

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摘要

Current design trends for structures require the increased use of high-strength concrete, which has a compressive strength of over 80 MPa. Its enhanced strength, however, leads to brittle failure problems, which have been resolved by adding steel fibres. Fibre-reinforced polymer (FRP) is actively being studied to resolve the corrosion problems encountered with steel reinforcing bars in concrete structures exposed to adverse environmental conditions. In this study, we experimentally evaluated the bond behaviour of FRP reinforcing bars in high-strength steel fibre-reinforced concrete. A high-strength concrete mix was created with a target strength of over 80 MPa, and steel fibre was added. The FRP reinforcing bars had an increased pullout load with a slow gradient, and the slope of the pullout load reduction curve remained small after the maximum pullout load was reached. In addition, the bond strength increased as steel fibre was added to the FRP reinforcing bar.
机译:当前结构的设计趋势要求增加使用抗压强度超过80 MPa的高强度混凝土。但是,其强度提高会导致脆性破坏问题,已通过添加钢纤维解决了该问题。人们正积极研究纤维增强聚合物(FRP),以解决暴露在不利环境条件下的混凝土结构中钢筋遇到的腐蚀问题。在这项研究中,我们通过实验评估了FRP钢筋在高强度钢纤维增强混凝土中的粘结性能。创建了目标强度超过80 MPa的高强度混凝土混合物,并添加了钢纤维。 FRP钢筋的拉拔载荷增加且斜率缓慢,达到最大拉拔载荷后,拉拔载荷减小曲线的斜率保持较小。另外,当将钢纤维添加到FRP钢筋中时,粘结强度增加。

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