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Effects of axial load on seismic performance of reinforced concrete walls with short shear span

机译:轴向荷载对短剪跨钢筋混凝土墙抗震性能的影响

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Reinforced concrete (RC) shear walls in tall buildings are found to have a short shear span, particularly in high-degree coupled walls supported on transfer structures in low-to-moderate seismic regions. These non-seismically detailed walls in existing buildings are exposed to a high risk of failing in shear or compression before plastic hinges are formed at their base. Whilst previous research have focused on squat walls used in low-rise structures tested with zero or low axial loads, the structural response of these walls with a short shear span and limited ductility under high axial load is rarely discussed. Therefore, an experimental study that investigates the influence of the axial load ratio.(ALR) on RC walls with a short shear span is presented in this paper. The specimens are designed with a low shear span-to-length ratio (SLR) and detailed with a characteristic 2% vertical and longitudinal reinforcement to represent a wall sub-structure above the transfer structure of tall buildings. Four walls are tested under reverse cyclic loading and subjected to target ALRs that range from 0.1 to 0.4 to investigate the seismic performance until gravity collapse. The ALR is found to have significant effects on crack patterns, failure modes and deformability. Two modified empirical prediction models are proposed to estimate the shear strength capacity and ultimate drift ratio of rectangular RC shear walls with a short shear span under the effects of the ALR A unique model of the drift limit of collapse under axial load as a function of the reinforcement ratio is put forward for performance based design and assessment. (C) 2017 Elsevier Ltd. All rights reserved.
机译:已发现高层建筑中的钢筋混凝土剪力墙剪力跨度短,特别是在中低地震区的转换结构上支撑的高耦合墙中。现有建筑物中的这些非抗震细节墙在其底部形成塑料铰链之前,很容易遭受剪切或压缩破坏。尽管先前的研究集中于在零轴向载荷或低轴向载荷下测试的低层结构中使用的蹲墙,但很少讨论在高轴向载荷下具有短剪力跨度和延展性的墙体的结构响应。因此,本文进行了一项实验研究,研究了轴向载荷比(ALR)对短剪切跨度的RC墙的影响。标本的设计采用低剪切跨度-长度比(SLR),并具有2%的纵向和纵向钢筋特征,以表示高层建筑物转移结构上方的墙子结构。四个墙在反向循环荷载下进行测试,并经受从0.1到0.4的目标ALR,以研究地震性能直至重力塌陷。发现ALR对裂缝模式,破坏模式和可变形性具有重大影响。提出了两种改进的经验预测模型,以在ALR作用下估算短剪跨的矩形RC剪力墙的抗剪承载力和极限位移比。提出了基于性能的设计和评估的增强比。 (C)2017 Elsevier Ltd.保留所有权利。

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