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Prediction of Ultimate Strain for Rectangular Reinforced Concrete Columns Confined with Fiber Reinforced Polymers under Cyclic Axial Compression

机译:循环轴向压缩下纤维增强聚合物限制矩形钢筋混凝土柱终极菌株的预测

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摘要

This paper investigates the crucial design parameters for the prediction of the ultimate axial compressive deformation of reinforced concrete columns externally confined with fiber reinforced polymer (FRP) materials. Numerous test results of available columns with a square and rectangular section under cyclic axial loading were gathered in an advanced database. Herein, the database is enriched with necessary design parameters in order to address the unique tensile strain field variation of the FRP jacket. Since there is a lack of consequent recording of the FRP strain field in existing experiments, three dimensional pseudodynamic finite element analyses results from several characteristic cases of tested columns are utilized to address this gap. Therefore, a hybrid experimental–analytical database is formed, including several critical FRP strains, steel strains and deformations. A modified model is proposed to predict the ultimate axial strain for reinforced concrete columns externally confined with FRP materials. The proposed model aims to address indirectly the effects of the internal steel cage, concrete section shape and of their interaction with the external FRP jacket on the critical tensile strain of the FRP jacket at failure of the column. The predictive performance of the model over the available tests of (reinforced concrete) RC columns under cyclic compression is remarkably improved when compared against the performance of other existing models. It provides predictions with average ratio (AR) of 0.96 and average absolute error (AAE) of 36.5% and therefore may contribute to safer seismic resistant redesign.
机译:本文研究了钢筋混凝土柱外外部掺入纤维增强聚合物(FRP)材料的最终轴向压缩变形的关键设计参数。在高级数据库中收集了在循环轴向载荷下具有正方形和矩形部分的可用柱的许多测试结果。这里,数据库被富含必要的设计参数,以解决FRP夹克的独特拉伸应变场变形。由于在现有实验中缺乏转化的FRP应变场的记录,因此使用若干测试柱的三维伪动有限元分析来解决该间隙。因此,形成混合实验 - 分析数据库,包括几种关键的FRP菌株,钢筋和变形。提出了一种改进的模型来预测外部限制FRP材料的钢筋混凝土柱的极限轴向菌株。该建议的模型旨在间接地解决内部钢笼,混凝土段形状和它们与外部FRP夹套的效果在柱子故障下的FRP护套的临界拉伸应变上的外部FRP护套的效果。与其他现有模型的性能相比,在循环压缩下的(钢筋混凝土)RC柱的可用测试的预测性能显着提高。它提供了平均比率(AR)0.96的预测,平均绝对误差(AAE)为36.5%,因此可能有助于更安全的地震耐药重新设计。

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