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首页> 外文期刊>Journal of structural engineering >Investigation of the Axial Load Capacity for Lightly Reinforced Wall Piers
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Investigation of the Axial Load Capacity for Lightly Reinforced Wall Piers

机译:轻型墙墩的轴向承载能力研究

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摘要

A large number of reinforced concrete buildings constructed prior to the mid-1970s in western North America rely on lightly reinforced, perforated, perimeter shear walls to resist earthquake-induced lateral forces. Although a substantial number of piers may exist, deformation demands can significantly exceed acceptable levels for plastic deformations published in common acceptance criteria such as FEMA 356. A shear-friction model is used to establish the ability of wall piers to support vertical loads after substantial loss of pier lateral-load capacity. The model results indicate that typical wall piers are capable of sustaining relatively large lateral drift ratios prior to loss of vertical load-carrying capacity, which is consistent with postearthquake observations. However, preliminary test results indicate that the drift capacity may be substantially less for poorly detailed walls, where axial failure occurred at a lateral drift ratio of approximately one percent.
机译:北美西部地区在1970年代中期之前建造的大量钢筋混凝土建筑依靠轻型,带孔的周边剪力墙抵抗地震引起的横向力。尽管可能存在大量桥墩,但变形要求可能会大大超出通用验收标准(例如FEMA 356)中公布的塑性变形的可接受水平。使用剪力-摩擦模型来确定墙墩在重大损失后支撑垂直载荷的能力的侧向荷载能力。模型结果表明,典型的墙墩能够在失去垂直承载能力之前维持相对较大的横向漂移率,这与地震后的观测结果是一致的。但是,初步测试结果表明,对于壁厚不佳的墙壁,其轴向位移可能会大大降低,因为轴向破坏发生在横向位移比率约为1%的情况下。

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