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Modelling shear-flexure interaction in equivalent frame models of slender RC walls

机译:在细长RC墙的等效框架模型中模拟剪切-弯曲相互作用

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摘要

Quasi-static cyclic tests on reinforced concrete (RC) walls have shown that shear deformations can constitute a significant ratio of the total deformations when the wall is loaded beyond the elastic regime. For slender RC walls that form a stable flexural mechanism, the ratio of shear to flexural deformations remains approximately constant over the entire range of imposed displacement ductilities. This paper proposes a method for incorporating shear-flexure interaction effects in equivalent frame models of slender RC walls by coupling the shear force-shear strain relationship to the curvature and axial strain in the member. The suggested methodology is incorporated in a finite element consisting of two interacting spread inelasticity sub-elements representing flexural and shear response, respectively. The element is implemented in the general finite element code IDARC and validated against experimental results of RC cantilever walls. In a second step, it is applied in inelastic static and dynamic analyses of tall wall and wall-frame systems. It is shown that ignoring shear-flexure interaction may lead to erroneous predictions in particular of local ductility and storey drift demands.
机译:对钢筋混凝土(RC)墙进行的准静态循环试验表明,当墙的荷载超出弹性范围时,剪切变形可构成总变形的很大比例。对于形成稳定挠曲机制的细长RC墙,在施加的位移延展性的整个范围内,剪切变形与挠曲变形之比保持近似恒定。本文提出了一种方法,通过将剪力-剪切应变关系与构件的曲率和轴向应变耦合,在细长的RC墙的等效框架模型中纳入剪-挠相互作用效应。所建议的方法被合并到一个有限元中,该有限元由两个分别表示弯曲和剪切响应的相互作用的扩展非弹性子元素组成。该单元以通用有限元代码IDARC实现,并根据RC悬臂墙的实验结果进行了验证。第二步,将其应用于高层墙和墙框架系统的非弹性静态和动态分析。结果表明,忽略剪切挠曲相互作用可能会导致错误的预测,尤其是局部延性和层间漂移需求的预测。

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    Mergos P.E.; Beyer K.;

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  • 年度 2014
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  • 正文语种 en
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