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Seismic performance assessment of flexure-dominate FRP-confined RC columns using plastic rotation angle

机译:利用塑性旋转角评估挠性支配FRP的RC柱的抗震性能

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摘要

External wrapping of fiber reinforced polymer (FRP) materials is a widely applied method for the seismic retrofit of reinforced concrete (RC) columns. The seismic evaluation of conventional reinforced concrete columns prior to retrofit is presented in ASCE 41–13 although there is little available guidance for evaluating the deformation capacity of FRP-retrofitted reinforced concrete columns. In this paper, 77 FRP-retrofitted concrete columns with flexural deficiency were collected from the published literature. The yield and ultimate rotations of all specimens were obtained from backbone curves. The relationship between yield and ultimate rotation, and column parameters was analyzed. Consistent with the approach of ASCE 41, an empirical model, which considers the variation of axial force ratio, effective transverse reinforcement ratio and shear force ratio, was proposed to predict the plastic and ultimate rotations. Results were compared with other available models and were shown to be generally more accurate for both circular and rectilinear columns, which proved the efficiency of the proposed model. Finally, a reduction parameter for the expression of plastic rotation angle was adopted to obtain the model parameterarequired for ASCE 41-compliant modelling of FRP-retrofitted reinforced concrete columns with flexural deficiency.
机译:纤维增强聚合物(FRP)材料的外部包裹是钢筋混凝土(RC)柱抗震改造的一种广泛应用的方法。尽管在评估FRP加固钢筋混凝土柱的变形能力方面缺乏可用的指导,但在改造之前,常规钢筋混凝土柱的抗震评估在ASCE 41-13中进行了介绍。本文从已发表的文献中收集了77根FRP加固的具有弯曲缺陷的混凝土柱。所有样品的屈服和极限旋转均从主干曲线获得。分析了屈服和极限旋转之间的关系,以及柱参数。与ASCE 41的方法一致,提出了一个考虑轴向力比,有效横向钢筋比和剪切力比变化的经验模型来预测塑性旋转和极限旋转。将结果与其他可用模型进行比较,结果表明,对于圆柱和直线柱,此方法通常更准确,这证明了所提出模型的效率。最后,采用减小塑性转角的参数来获得抗弯性不足的FRP加固钢筋混凝土柱的ASCE 41兼容模型所需要的模型参数。

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