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Alternative Strategies to Enhance the Seismic Performance of Reinforced Concrete-Block Shear Wall Systems

机译:增强钢筋混凝土砌块剪力墙系统抗震性能的替代策略

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In this paper, seven reinforced concrete-block shear walls with aspect ratios of 1.5 and 2.2 (two- and three-storey high) were tested under displacement-controlled cyclic loading. The response of rectangular, flanged, and end-confined walls, designed to have the same lateral resistance when subjected to the same axial load, is discussed. In general, high levels of ductility accompanied by relatively small strength degradation were observed in all walls with a significant increase in ductility and displacement capabilities for the flanged and end-confined walls compared to the rectangular ones. For both aspect ratios evaluated, the drift levels at 20% strength degradation were 1.0, 1.5, and 2.2% corresponding to the rectangular, the flanged, and the end-confined walls, respectively. The ductility values of the proposed flanged and end-confined walls were, respectively, 1.5 and 2 times those of their rectangular wall counterparts (with the same overall length and aspect ratio). In addition to the enhanced ductility, a saving of more than 40% in the amount of vertical reinforcement was achieved using the proposed alternative strategies while maintaining the same lateral wall resistance. Existing design clauses were used to predict the wall capacities using the American and the Canadian masonry codes and showed excellent agreement. This will facilitate adoption of the new construction categories with minimal modifications to existing code clauses. The test results indicate that higher ductility than the currently endorsed values by North American codes should be used for rectangular walls. Moreover, higher values should be expected when the proposed strategies are adopted which would significantly reduce the seismic demand on reinforced concrete-block shear wall construction.
机译:在本文中,在位移控制的循环荷载下,测试了七个纵横比分别为1.5和2.2(两层和三层高)的钢筋混凝土砌块剪力墙。讨论了矩形,带凸缘和端部受限的壁的响应,这些壁设计成在承受相同的轴向载荷时具有相同的侧向阻力。通常,在所有壁中都观察到高水平的延展性以及相对较小的强度降低,与矩形壁相比,带凸缘和端承墙的延性和位移能力显着提高。对于评估的两个纵横比,强度降低20%时的漂移水平分别为1.0%,1.5%和2.2%,分别对应于矩形壁,带凸缘壁和端部约束壁。拟议的带凸缘墙和端部约束墙的延性值分别是矩形墙的延性值的1.5倍和2倍(具有相同的总长和长宽比)。除了提高延展性之外,使用建议的替代策略还可以在保持相同的侧壁阻力的情况下节省40%以上的垂直钢筋。现有的设计条款使用美国和加拿大的砌体规范来预测墙的承载能力,并显示出极好的一致性。这将有助于采用新的构造类别,而对现有代码条款的修改最少。测试结果表明,对于矩形墙,应使用比北美法规当前认可的值更高的延展性。此外,采用所提出的策略时应期望更高的值,这将大大减少钢筋混凝土砌块剪力墙施工的地震需求。

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