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Simplified design-oriented axial stress-strain model for FRP-confined normal- and high-strength concrete

机译:FRP约束高强混凝土的简化设计导向轴向应力应变模型

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摘要

This study presents a simple yet powerful design-oriented model that makes use of commonly available input data to predict the axial stress strain behavior of fiber reinforced polymer (FRP)-confined concrete in circular sections. The approach of identifying the most influential parameters on the axial compressive behavior of FRP-confined concrete and developing new expressions based on these parameters by balancing accuracy and simplicity of use was adopted. A comprehensive experimental test database of FRP-confined normal-strength and high-strength concrete (NSC and HSC) was compiled and used in the model development. Although the proposed expressions to predict the axial stress and strain at the ultimate and transition point of the stress-strain curve were simple, the results show that they performed as good as or better than the best performing existing models. Based on these expressions a model to predict the complete axial stress-strain curve of FRP-confined concrete was developed and verified against the available experimental data. The proposed model is applicable to both FRP-confined NSC and HSC with compressive strengths up to 120 MPa, and is the first accurate design-oriented model to provide the complete stress-strain curve of FRP-confined HSC.
机译:这项研究提出了一个简单但功能强大的面向设计的模型,该模型利用常用的输入数据来预测圆形截面中的纤维增强聚合物(FRP)约束混凝土的轴向应力应变行为。采用了确定对FRP约束混凝土轴向压缩性能影响最大的参数,并在此基础上通过兼顾准确性和使用简便性来开发新表达式的方法。编制了FRP约束高强混凝土(NSC和HSC)的综合实验测试数据库,并将其用于模型开发。尽管所提出的用于预测应力-应变曲线的最终点和过渡点处的轴向应力和应变的表达式很简单,但结果表明,它们的表现与现有模型中表现最好的表现相同或更好。基于这些表达式,建立了可预测FRP约束混凝土完整轴向应力-应变曲线的模型,并针对现有的实验数据进行了验证。该模型适用于FRP约束的NSC和抗压强度高达120 MPa的HSC,并且是第一个提供FRP约束的HSC完整应力-应变曲线的精确设计导向模型。

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