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Experimental Study on Shear Resistance of Precast RC Shear Walls with Novel Bundled Connections

机译:具有新型捆绑连接预制RC剪力墙剪切电阻的实验研究

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摘要

This study presents shear resistance of precast reinforced concrete (RC) shear walls. A novel assembling method for upper and lower wall panels is proposed, whereas vertical steel bars are grouped into bundles and effectively connected in preformed holes. To evaluate the feasibility and shear resistance of such a connection method, three specimens of precast shear walls with different horizontal steel bars have been constructed and tested under monotonic loading while subjected to a constant vertical compression. The results show that cracks mainly appear under the line that connects the midpoint of tension side and the corner of the compression side. The weak section of these shear walls is at the top of the preformed holes, and through cracks do not appear at the bottom of walls. These innovative precast shear walls are reliable, and no rebar is pulled out or seriously slipped. The yield load of the shear wall is great, and the stage between yield and failure is satisfactory. The bearing capacity declines slowly after the peak value.
机译:本研究介绍了预制钢筋混凝土(RC)剪切墙的剪切电阻。提出了一种用于上壁板的新型组装方法,而垂直钢筋被分组成束并有效地连接在预制孔中。为了评估这种连接方法的可行性和剪切电阻,在单调负载下构建并测试了具有不同水平钢筋的预制剪力壁的三个标本,同时经受恒定的垂直压缩。结果表明,裂缝主要出现在连接张力侧和压缩侧的角落的线下。这些剪切壁的弱部分位于预制孔的顶部,并且通过裂缝不会出现在壁的底部。这些创新的预制剪力墙是可靠的,并且没有撤销或严重剥离螺纹钢。剪切壁的屈服负荷很大,产量和失效之间的阶段是令人满意的。轴承容量在峰值值后慢慢下降。

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