Strain-Based Design Model for FRP-Confined Concrete Columns

N. Sáenz, C. Pantelides
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引用次数: 1

Abstract

Synopsis: A constitutive strain-based confinement model is developed herein for circular concrete columns confined with fiber reinforced polymer (FRP) composites. A series of relationships were developed from experimental data, which facilitated the establishment of the strain-based model. The FRP-confined concrete constitutive model calculates the internal damage of the column by using the radial strain. The radial and axial strains at zero volumetric strain were used to mark the beginning of effective dilation response of the FRP composite jacket. The secant concrete modulus was used in the model and expressed as a function of the secant modulus softening rate, which depends on the ultimate radial to axial strain ratio. The experimental relationship for the ultimate radial to axial strain ratio is a function of the normalized effective confining stiffness. The secant modulus softening rate is constant throughout the plastic stress-strain response until failure. The FRP-confined concrete constitutive model evaluates the ultimate radial strain, which was related to the FRP composite effectiveness. The FRP-confined concrete model predicts the stress-strain response accurately for any normalized effective confinement stiffness.
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frp约束混凝土柱的应变设计模型
摘要:本文建立了纤维增强聚合物(FRP)复合材料约束下圆形混凝土柱的本构应变约束模型。根据实验数据建立了一系列关系,为基于应变的模型的建立提供了便利。frp约束混凝土本构模型采用径向应变计算柱的内部损伤。采用零体积应变时的径向应变和轴向应变标志FRP复合材料夹套的有效膨胀响应开始。模型中采用混凝土割线模量,并将其表示为割线模量软化率的函数,而割线模量软化率取决于最终的径向与轴向应变比。极限径向与轴向应变比的实验关系是归一化有效围压刚度的函数。割线模量软化速率在整个塑性应力-应变响应过程中是恒定的,直到破坏。FRP约束混凝土本构模型评估了与FRP复合材料有效性相关的极限径向应变。frp约束混凝土模型准确地预测了任何归一化有效约束刚度的应力-应变响应。
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