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Structural behavior of seawater sea-sand concrete shear wall reinforced with GFRP bars

机译:用GFRP棒加固海水海砂混凝土剪力墙的结构行为

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This paper investigates the seismic performance of seawater sea-sand concrete (SSC) shear wall reinforced with glass fiber reinforced plastic (GFRP) bars. Three shear wall specimens were designed for the seismic performance evaluation, including natural aggregate concrete (NAC) reinforced with steel bars (SNW), NAC reinforced with GFRP bars (GNW) and SSC reinforced with GFRP bars (GSW). The results show that the application of SSC seems to have a negligible effect on the seismic performance of shear wall in the short term. The GNW and GSW have similar failure patterns and shapes of hysteresis curves. Also, with the same reinforcement ratio, the bearing capacity of GFRP reinforced specimens can be over 85% that of SNW while the deformability can reach the lateral drift up to 1/50. The ductility of GFRP reinforced specimen is lower than that of steel reinforced specimen but its residual deformation is relatively smaller. Furthermore, the applicability of existing design methods on the SSC shear wall is also evaluated.
机译:本文研究了海水海砂混凝土(SSC)剪切壁的地震性能,加强了玻璃纤维增​​强塑料(GFRP)棒材。设计了三个剪切墙标本用于抗震性能评估,包括用钢筋(SNW)加固的天然骨料混凝土(NAC),NAC加强了GFRP棒(GNW)和使用GFRP棒(GSW)加固的SSC。结果表明,SSC的应用似乎对短期内剪力墙的地震性能产生了可忽略不计的影响。 GNW和GSW具有类似的故障模式和滞后曲线的形状。而且,具有相同的加强率,GFRP增强样品的承载能力可以超过SNW的85%,而可变形性可以达到横向漂移至1/50。 GFRP增强标本的延展性低于钢筋标本的延展性,但其残余变形相对较小。此外,还评估了现有设计方法对SSC剪切墙上的适用性。

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