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Shear and flexural stiffnesses of reinforced concrete shear walls subjected to cyclic loading

机译:受循环荷载作用的钢筋混凝土剪力墙的剪切和弯曲刚度

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摘要

Abstract: Seismic analyses of concrete structures under maximum-considered earthquakes require the use of reduced stiffness accounting for cracks and degraded materials. Structural walls, different to other flexural dominated components, are sensitive to both shear and flexural stiffness degradations. Adoption of the gross shear stiffness for walls in seismic analysis prevails particularly for the design codes in the US. Yet available experimental results indicate that this could overstate the shear stiffness by more than double, which would hamper the actual predictions of building periods and shear load distributions among columns and walls. In addition, the deformation capacity could be drastically understated if the stipulated constant ductility capacity is adopted. This paper reviews the available simplified shear and flexural models, which stem from classical mechanics, empirical formulations and/or parametric studies, suitable for structural walls at the state-of-the-art. Reviews on the recommended flexural and shear stiffnesses by prominent design codes such as ACI318-11, Eurocode 8 and CSA are included. A database comprised of walls subjected to reverse-cyclic loads is formed to evaluate the performance of each model. It is found that there exist classical models that could outweigh overconservative codified values with comparable simplicity for practical uses.
机译:摘要:在考虑最大地震的情况下对混凝土结构进行地震分析时,需要使用降低刚度的方法来考虑裂缝和退化材料。与其他受弯曲支配的构件不同,结构墙对剪切和弯曲刚度退化均敏感。在地震分析中采用墙壁的总剪切刚度尤其适用于美国的设计规范。然而,可用的实验结果表明,这可能会使抗剪刚度夸大两倍以上,这会妨碍对建筑物工期和柱与墙之间的剪力分布的实际预测。另外,如果采用规定的恒定延性能力,则变形能力可能会大大降低。本文回顾了现有的简化剪切和挠曲模型,这些模型源于经典力学,经验公式和/或参数研究,适用于最新的结构墙。包括通过著名的设计规范(例如ACI318-11,Eurocode 8和CSA)对推荐的抗弯刚度和抗剪刚度的评论。形成了一个数据库,该数据库由承受反向循环荷载的墙组成,以评估每个模型的性能。发现存在一些古典模型,它们在实用上具有可比的简单性,可以超过保守的编码值。

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  • 作者

    Su RKL; Tang TO;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 eng
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