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Seismic behavior of composite shear walls incorporating high-strength materials and CFST boundary elements

机译:复合剪力墙的地震行为,包括高强度材料和CFST边界元件

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An innovative shear wall was proposed, which was composed of high-strength concrete and steel rebars, as well as concrete-encased CFST columns embedded at boundary elements. To study the cyclic and resilient behavior of the proposed wall, four walls with shear span ratios of 2.2 were designed and tested under quasi-static cyclic loads. The test parameters were the type of longitudinal bars at boundary elements, the presence of steel fibers, and the axial compression ratio. As test results showed, within the limit of axial compression ratio, the proposed shear walls had small residual deformation until a 2% loading drift ratio; after that, the hysteresis curve became full and the energy dissipation capacity increased, indicating the desirable collapse resistance. Specifically, the use of ultra-high strength longitudinal bars at boundary elements significantly decreased the residual de-formation and improved the reparability. In addition, steel fibers effectively enhanced the deformation capacity of the proposed walls. Finally, given the confined effects of CFST columns and stirrups on concrete, a prediction model for the lateral load-bearing capacity was established. The comparison between predicted and test results from this study and existing research verified the good accuracy of this model.
机译:提出了一种创新的剪力墙,由高强度混凝土和钢筋构成,以及嵌入在边界元素的混凝土封装的CFST柱。为了研究所提出的墙壁的循环和弹性行为,在准静态循环负载下设计并测试了具有2.2的剪切跨度比的四个壁。测试参数是边界元件处的纵杆类型,钢纤维的存在和轴向压缩比。随着测试结果显示,在轴向压缩比的极限内,所提出的剪切壁具有小的残余变形,直至2%负荷漂移比。之后,滞后曲线变得完全并且能量耗散能力增加,表明抗塌陷性抗性。具体地,在边界元件处使用超高强度纵向杆显着降低了残留的去形成并提高了可重复性。此外,钢纤维有效地提高了所提出的墙壁的变形能力。最后,鉴于CFST柱和搅拌在混凝土上的狭窄效果,建立了横向承载能力的预测模型。从本研究和现有研究的预测和测试结果之间的比较验证了该模型的良好准确性。

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