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Experimental investigation of shear walls using carbon fiber reinforced polymer bars under cyclic lateral loading

机译:碳纤维增强聚合物筋剪力墙在周期性侧向荷载作用下的试验研究

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The aim of this paper was to investigate the seismic behavior of shear walls reinforced with CFRP (carbon fiber reinforced polymer) bars as longitudinal reinforcement. Three full-scale shear walls with same geometry and dimension were tested up to failure under pseudostatic cyclic lateral loading. The first one was a conventional reinforced wall (as a reference specimen). The second was reinforced with steel bars in boundary elements and CFRP bars in the wall web as vertical reinforcements. The third was reinforced with CFRP bars totally in the vertical direction. Residual deformations and cracks were of particular interest. The experimental results show that the CFRP-reinforced shear wall achieved comparable lateral strength, post-yield stiffness, acceptable lateral drift and lower level of energy dissipation compared with the reference wall. Besides, excellent self-centering behavior was observed, and the residual deformation of CFRP-reinforced shear walls decreased by more than 50% compared to the reference wall at a lateral drift of 1.0%. These promising results demonstrate the feasibility of CFRP bars as linear-elastic material to achieve self-centering behavior of shear wall.
机译:本文的目的是研究以CFRP(碳纤维增强聚合物)钢筋作为纵向钢筋的剪力墙的抗震性能。测试了三个具有相同几何形状和尺寸的全尺寸剪力墙,直到在拟静力侧向荷载作用下失效。第一个是常规的加固墙(作为参考样本)。第二个是在边界单元中用钢筋加固,而墙腹板中的CFRP钢筋则作为垂直加固。第三个在整个垂直方向上全部用CFRP筋加固。残余变形和裂缝特别令人关注。实验结果表明,与参考墙相比,CFRP加固的剪力墙可实现相当的横向强度,屈服后刚度,可接受的横向漂移和较低的能量耗散水平。此外,观察到优异的自定心性能,在横向偏移为1.0%时,CFRP加固的剪力墙的残余变形与参考墙相比减少了50%以上。这些有希望的结果证明了CFRP筋作为线弹性材料来实现剪力墙自定心行为的可行性。

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