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A Stress-strain Model Considering Bilinear and PostPeak Softening Behaviors for FRP-confined RC Columns

机译:FRP约束RC柱考虑双线性和峰后软化行为的应力应变模型

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Objectives: A model with more generalized scope than those in the literature has been proposed to predict the stressstrain response of Fiber-Reinforced Polymer (FRP) confined rectangular RC columns under axial compression. Methods/ Statistical Analysis: 255 columns with their experimental data were used as a basis for the model expressions. Their database included columns with aspect ratios ranging from 1.0 to 2.0. Furthermore, the cross sectional depth varied from 100 to 500 mm and the unconfined concrete strength varied from 18.3 to 51.5 MPa. Findings: Based on interpretation of the test results, bilinear and post-peak softening stress-strain responses are proposed as referencing models, respectively, for columns having a sectional depth of smaller or larger than 300 mm. The softening model is composed of a parabolic expression for describing the first stage of the response and two linear expressions for the second and third stages. The influences of aspect ratio and size of cross sections, number of FRP layers and internal hoop steel bars on the key features of the envelope stress-strain curve model (i.e. ultimate axial stress and strain) are all considered in the model. Application/ Improvements: Reasonable agreement was revealed between the analytical responses of the proposed model with the selected tested responses, confirming its ability to simulate the stress-strain behavior of FRP-confined rectangular RC columns of small or large sizes.
机译:目的:提出了一种比文献中更广泛的范围的模型来预测纤维增强聚合物(FRP)约束矩形RC柱在轴向压缩下的应力应变响应。方法/统计分析:255列实验数据用作模型表达式的基础。他们的数据库包含纵横比在1.0到2.0之间的列。此外,横截面深度从100到500 mm不等,无限制混凝土强度从18.3到51.5 MPa不等。研究结果:基于对测试结果的解释,针对截面深度小于或大于300 mm的圆柱,分别提出了双线性和峰后软化应力-应变响应作为参考模型。软化模型由用于描述响应的第一阶段的抛物线表达式以及用于第二和第三阶段的两个线性表达式组成。长宽比和横截面尺寸,FRP层数和内部箍筋数量对包络应力-应变曲线模型的关键特征(即最终轴向应力和应变)的影响均已考虑在内。应用/改进:在建议的模型的分析响应与选定的测试响应之间揭示出合理的一致性,从而证实了其能够模拟FRP约束的矩形或小尺寸矩形RC柱的应力-应变行为。

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