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Steel Plate Cold-Rolled Section Steel Embedded High-Strength Concrete Low-Rise Shear Wall Seismic Performance

机译:钢板冷轧段钢嵌入式高强度混凝土低层剪切墙抗震性能

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摘要

Four test pieces with different steel plate center-to-center distances and reinforcement ratios are subjected to low-cycle repeat quasistatic loading to optimize properties as failure mode, hysteretic curve, skeleton curve, energy dissipation parameters, strength parameters, and seismic performance of high-strength concrete low-rise shear walls. The embedded steel plates are shown to effectively restrict wall crack propagation, enhance the overall steel ratio, and improve the failure mode of the wall while reducing the degree of brittle failure. Under the same conditions, increasing the spacing between the steel plates in the steel plate concrete shear wall can effectively preserve the horizontal bearing capacity of the shear wall under an ultimate load. The embedded steel plates perform better than concealed bracing in delaying stiffness degeneration in the low-rise shear walls, thus safeguarding their long-term bearing capacity. The results presented here may provide a workable basis for shear wall design optimization.
机译:四个试验片具有不同的钢板的中心到中心距离和加强比率进行低循环重复准静态负载以优化性能故障模式,滞回曲线,骨架曲线,耗能参数,强度参数,和高的抗震性能-Strength混凝土低层剪力墙。嵌入的钢板显示出有效地限制壁裂纹扩展,提高整体钢率,提高壁的故障模式,同时降低脆性破坏的程度。在相同条件下,在钢板混凝土剪力墙提高钢板之间的间隔能有效地保持剪切壁的水平承载能力的极限荷载下。嵌入式钢板比在延迟刚度退化暗支撑执行更好的低上升剪力墙,从而保护它们的长期承受能力。这里给出的结果可为剪力墙设计优化可行的基础。

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