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首页> 外文期刊>Advances in Structural Engineering >Punching shear resistance of strengthened reinforced concrete interior slab-column connections using ultra-high-performance strain-hardening cementitious composite material
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Punching shear resistance of strengthened reinforced concrete interior slab-column connections using ultra-high-performance strain-hardening cementitious composite material

机译:采用超高性能应变硬化水泥复合材料的强化钢筋混凝土内部平板连接的冲压剪切电阻

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摘要

The main target of this article is to find out the most applicable strengthening technique to change the brittle punching shear failure of slab-column connection to a ductile one. The considered strengthening technique uses the combined effect of the internal single-leg stirrups and a thin layer of ultra-high-performance strain hardening cementitious composite material provided in either tension or compression side. Thus, 12 slab specimens divided into four groups were prepared and configured. It was found that the slab provided with properly anchored single-leg stirrups with a cross-shaped thin layer of ultra-high-performance strain hardening cementitious composite material at the compression side proved the most efficient technique among all the considered configurations. This technique enabled the slab to sustain a punching load of about 2.38 times that of the control unstrengthened slab. In addition, it exhibited ductile failure showing strain hardening and softening plateaus. Finally, the experimental shear resistances of all the strengthened slabs were compared against the design resistances stipulated by different design standards such as the ECP 203-2007, ACI 318-14, DIN 1045-1, and EC2-2004 codes. It can be concluded that the failure characteristics stipulated by the DIN 1045-1 code showed the most rational results compared with those of the experimental findings.
机译:本文的主要目标是找出最适用的强化技术,以将平坦冲击剪切失效改变为延展性的脆性冲压剪切失效。所考虑的强化技术采用内部单腿箍筋的组合效果和薄层的超高性能应变硬化固溶材料中提供的张力或压缩侧提供的胶质复合材料。因此,制备和配置了12个分为四组的12个板坯样本。结果发现,在压缩侧的具有横叠薄层固有的超高性能硬化硬化复合材料的单腿旋转的板坯证明了所有所考虑的配置中最有效的技术。该技术使得板坯能够维持一个冲压负荷约为控制未经鼓长的板坯的2.38倍。此外,它表现出延性衰竭,显示出菌株硬化和软化平稳。最后,将所有强化板的实验剪切与不同的设计标准规定的设计电阻进行比较,例如ECP 203-2007,ACI 318-14,DIN 1045-1和EC2-2004代码。可以得出结论,DIN 1045-1码规定的故障特征显示与实验结果相比的最合理的结果。

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