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首页> 外文期刊>Journal of structural engineering >Cyclic Lateral Loading Behavior of Composite Plate Shear Walls/Concrete Filled
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Cyclic Lateral Loading Behavior of Composite Plate Shear Walls/Concrete Filled

机译:复合板剪切墙/混凝土填充的循环横向装载行为

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Planar composite plate shear walls/concrete filled (C-PSW/CF) consist of two steel web plates and two flange (or closure) plates making up a long hollow box section that is filled with concrete. The web plates are connected to each other using regularly spaced steel tie bars. Steel headed stud anchors (shear studs) may be added to reduce the steel plate slenderness for local buckling considerations in the composite phase. This paper presents the results of experimental investigations conducted to evaluate the behavior of five planar C-PSW/CF specimens subjected to constant axial compression and cyclic lateral loading. Parameters included are the axial load level, steel plate slenderness ratio, and tie reinforcement ratio. The cyclic lateral load-deflection responses of the composite wall specimens are discussed along with their lateral stiffness, strength, and deformation capacity. Experimental results indicate that the lateral load capacity of composite walls is governed by flexural yielding of the steel plates followed by plate inelastic local buckling and concrete crushing. All the wall specimens developed and exceeded the flexural capacity calculated using the plastic stress distribution method (while including the effects of axial compression). The post-peak strength degradation of wall specimens is governed by the initiation and propagation of fracture through the steel flange plates and web plates. A fiber-based model was developed and used to calculate the section moment-curvature response of the specimens. Comparing the experimental and numerical moment-curvature responses indicates that the section flexural stiffness and flexural capacity can be estimated using the fiber-based analysis method. (C) 2021 American Society of Civil Engineers.
机译:平面复合板剪切墙/混凝土填充(C-PSW / CF)由两个钢网板和两个法兰(或闭合)板组成,构成了一个填充混凝土的长空箱部分。纤维板使用规则间隔的钢结杆彼此连接。可以添加钢头螺柱锚(剪切螺柱)以减少复合阶段局部屈曲考虑的钢板细长。本文介绍了对经受恒定轴向压缩和循环横向载荷进行五个平面C-PSW / CF样本的实验研究结果。参数包括轴向载荷水平,钢板细小比和系列加固率。复合壁样品的循环横向载荷偏转应答随着它们的横向刚度,强度和变形能力讨论。实验结果表明,复合壁的横向载荷能力通过钢板的弯曲屈服,然后是板式无弹性局部屈曲和混凝土压碎。所有墙壁标本都开发并超过了使用塑性应力分配方法计算的弯曲能力(同时包括轴向压缩的影响)。壁样标本的后峰值强度降解由骨折通过钢法兰板和纤维板的起始和传播来控制。开发了一种基于纤维的模型,并用于计算样本的部分矩形曲率响应。比较实验和数值曲率曲率响应表明,可以使用基于纤维的分析方法估计弯曲刚度和弯曲能力。 (c)2021年美国土木工程师协会。

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