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Refinement of a design-oriented stress-strain model for FRP-confined concrete

机译:面向设计的FRP约束混凝土应力应变模型的细化

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摘要

This paper presents the results of a recent study conducted to refine the design-oriented stress–strain model originally proposed by Lam and Teng for fiber-reinforced polymer (FRP)-confined concrete under axial compression. More accurate expressions for the ultimate axial strain and the compressive strength are proposed for use in this model. These new expressions are based on results from recent tests conducted by the writers’ group under well-defined conditions and on results from a parametric study using an accurate analysis-oriented stress–strain model for FRP-confined concrete. They allow the effects of confinement stiffness and the jacket strain capacity to be separately reflected and accounts for the effect of confinement stiffness explicitly instead of having it reflected only through the confinement ratio. The new expressions can be easily incorporated into Lam and Teng’s model for more accurate predictions. Based on these new expressions, two modified versions of Lam and Teng’s model are presented. The first version involves only the updating of the ultimate axial strain and compressive strength equations. The second version caters to stress–strain curves with a descending branch, which is not covered by the original model.
机译:本文介绍了最近的一项研究结果,该研究结果是对Lam和Teng最初提出的针对设计的面向设计的应力-应变模型进行改进的,该模型针对轴向受压的纤维增强聚合物(FRP)约束混凝土。提出了用于极限轴向应变和抗压强度的更精确的表达式,用于该模型。这些新表达式基于作者小组在明确定义的条件下进行的最新测试的结果,以及基于对FRP约束混凝土使用精确的面向分析应力-应变模型的参数研究得出的结果。它们允许分别反映约束刚度和护套应变能力的影响,并明确说明约束刚度的影响,而不是仅通过约束比率来反映。这些新表达式可以轻松地整合到Lam和Teng的模型中,以进行更准确的预测。根据这些新表达式,我们提出了Lam和Teng模型的两个修改版本。第一个版本仅涉及极限轴向应变和抗压强度方程的更新。第二个版本用一个下降的分支来迎合应力-应变曲线,而原始模型没有涵盖该分支。

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