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Experimental study on the seismic behavior of seawater sea sand concrete beams reinforced with steel-FRP composite bars

机译:钢 - FRP复合杆加固海水海砂混凝土梁抗震行为的实验研究

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This study offers a new solution to improve the durability of steel-reinforced seawater sea sand concrete (SWSSC) beams without reducing their energy-dissipation capacity under seismic loads. Thus, an investigation of beams reinforced with steel-FRP composite bars (SFCBs), hybrid reinforced with SFCB bars and basalt fiber reinforced polymer (BFRP) bars was conducted. The effects of incorporating 1% minibar in concrete on the seismic behavior of reinforced concrete (RC) beams were also studied. These behaviors included the failure mode, hysteretic response, stiffness degradation, energy-dissipation capacity, strain variation, and curvature of the pedestal. Results showed that chloride ions in seawater and sea sand concrete caused steel bars to corrode and adversely affected the seismic response of RC beams. In addition, the SFCB bars and hybrid RC beams exhibited a more pronounced pinching effect and smaller residual displacement as compared with the steel RC beams. The total cumulative dissipated energy of the SFCB RC beams was approximately the same as that of the steel bar RC beams due to increased deformation. The seismic behaviors of the SFCB bar reinforced minibar-concrete beams were significantly improved under low cyclic loads due to a stable confinement of minibar on concrete. Their load-carrying capacity and energy consumption increased by 27.0% and 36.5%, respectively, as compared with those of the steel RC beams. Similar improvements could be observed in the response of the lateral load versus curvature in the pedestal relationship. Based on these seismic behaviors, structures reinforced by SFCB bars and hybrid reinforced by SFCB and BFRP bars are recommended as means of reinforcement for seawater and sea sand concrete structures.
机译:这项研究提供了一个新的解决方案,以提高钢筋海水海砂混凝土(SWSSC)的耐久性而不地震荷载作用下减少能源耗散能力梁。因此,光束的调查钢-FRP复合棒(SFCBs)增强,混合钢筋SFCB酒吧和玄武岩纤维增强聚合物(BFRP)条中进行。在钢筋混凝土的抗震性能混凝土结合1%迷你吧的效应(RC)梁也进行了研究。这些行为包括故障模式,滞后响应,刚度退化,能量耗散能力,应变变化,和曲率的基座。结果表明,氯离子在海水海砂混凝土造成钢筋腐蚀和不利影响RC的地震响应梁。此外,SFCB杆和混合钢筋混凝土梁表现出更明显的收缩效应和更小的残余位移与钢RC梁相比。所述SFCB钢筋混凝土梁的总累积耗散的能量大约是相同的钢棒RC梁由于增加变形。在SFCB条的抗震性能钢筋迷你吧混凝土梁均显著低循环载荷下,由于迷你吧的混凝土稳定的约束改善。其承载能力和能量消耗分别增加27.0%和36.5%,与那些钢RC梁的比较。类似的改进可以在横向负荷与在基座关系曲率响应被观察到。基于这些抗震性能,结构,加强了SFCB酒吧和混合动力加强了SFCB和玄武岩纤维布条被推荐为加强对海水海砂混凝土结构的手段。

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