钢筋与BFRP筋混凝土剪力墙抗震性能对比分析

Comparative analysis of seismic behavior of concrete shear walls reinforced with steel bars and BFRP bars

  • 摘要: 为了探究钢筋与BFRP筋混凝土剪力墙抗震性能的异同,开展了配置不同水平配筋率(0.25%和0.50%)的钢筋和BFRP筋混凝土剪力墙抗震性能试验;并采用细观数值模拟的方法,将水平配筋率拓展到0%和1.00%。本研究主要讨论了筋材类型对剪力墙抗震性能的影响,对比了RC和BFRP-RC剪力墙的抗剪承载力、变形能力、耗能能力、刚度及恢复性能。试验结果表明:在水平循环荷载作用下,水平配筋率为0%~0.25%和0.50%~1.00%的剪力墙分别发生了剪切破坏和压剪破坏。水平配筋率对钢筋混凝土(RC)剪力墙和BFRP筋混凝土(BFRP-RC)剪力墙的破坏模式、抗剪承载力、变形能力和耗能能力影响相同,即增大水平配筋率可以增强剪力墙的抗震性能。然而,两种剪力墙的抗震性能存在差异:在不同水平配筋率下,BFRP-RC剪力墙的抗剪承载力约为RC剪力墙的74~78%,变形能力约为47%~84%、初始刚度约为77~84%。由于加载过程中BFRP筋一直处于弹性变形阶段,BFRP-RC剪力墙的恢复能力显著强于RC剪力墙。水平配筋率为0.25%和0.50%时,BFRP-RC剪力墙的残余变形分别为RC剪力墙的62%和13%,BFRP-RC剪力墙的恢复性能更为符合实际工程中可恢复功能抗震结构的要求。

     

    Abstract: The seismic performance tests of reinforced concrete (RC) shear walls and BFRP bars reinforced concrete (BFRP-RC) shear walls with different horizontal reinforcement ratios (0.25% and 0.50%) were carried out to explore the similarities and differences in seismic performance between RC and BFRP-RC shear walls. And the horizontal reinforcement ratio was expanded to 0% and 1.00% in meso-scale numerical simulation. The influence of reinforced materials type on the seismic performance of shear walls was discussed, and the shear capacity, deformation capacity, energy dissipation capacity, stiffness and recovery performance of RC and BFRP-RC shear walls were compared. The test results show that the shear failure and compressive shear failure occurred respectively in the shear walls with horizontal reinforcement ratios of 0%~0.25% and 0.50%~1.00% under horizontal cyclic load. The horizontal reinforcement ratio has the same effect on the failure mode, shear capacity, deformation capacity and energy dissipation capacity of RC shear wall and BFRP-RC shear wall; that is, increasing the horizontal reinforcement ratio can enhance the seismic performance of shear walls. However, the seismic performance of RC and BFRP-RC shear walls is different. Under the two horizontal reinforcement ratios, the shear capacity of the BFRP-RC shear wall is about 74%~78% of that of the RC shear wall, the deformation capacity is about 47%~84%, and the initial stiffness is about 77%~84%. Because the BFRP bar is always in the elastic deformation stage during loading, the recoverability of the BFRP-RC shear wall is significantly stronger than that of the RC shear wall. When the horizontal reinforcement ratio is 0.25% and 0.50%, the residual deformation of BFRP-RC shear walls is 62% and 13% of that of RC shear walls, respectively. The recoverability of the BFRP-RC shear wall is more in line with the requirement of recoverable functional aseismic structure in practical engineering.

     

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