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Perforated Hybrid Precast Shear Walls for Seismic Regions

机译:地震区域的多孔混合预制剪力墙

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This paper discusses the behavior of two 0.4-scale multi-panel hybrid precast concrete shear wall test specimens with large rectangular perforations (that is, openings) under combined lateral and gravity loading. The wall system used a combination of mild steel (to provide energy dissipation) and unbonded post-tensioning steel (to provide self-centering) for lateral resistance across horizontal joints. The paper compares the measured global and local behaviors of the walls with design and analytical predictions. The panel perforations, which varied in size between the two specimens, performed as expected and did not significantly affect the global behavior of the walls. One of the specimens satisfied the ACI ITG-5.1 performance validation criteria for "special" reinforced concrete shear walls, but the other specimen experienced full uplift at the base joint due to a greater contribution from the energy-dissipating mild steel to the total base moment resistance of the wall. These results are used to make recommendations for the seismic design and analysis of hybrid precast shear walls with large panel perforations.
机译:本文讨论了两个0.4比例的多面板混合预制混凝土剪力墙试样在横向和重力共同作用下的行为,该试样具有较大的矩形穿孔(即开口)。墙体系统使用低碳钢(以提供能量消散)和未粘结的后张钢(以提供自定心)的组合,以在水平接缝处产生横向阻力。本文将墙的整体和局部行为与设计和分析预测进行了比较。面板穿孔在两个样本之间的大小各不相同,按预期执行,并且不会显着影响墙的整体行为。其中一个样品满足“特殊”钢筋混凝土剪力墙的ACI ITG-5.1性能验证标准,但是另一个样品由于耗能的低碳钢对总基础弯矩的贡献更大,因此在基部接头处经历了完全隆起墙的阻力。这些结果可为具有大面板穿孔的混合预制剪力墙的抗震设计和分析提供建议。

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