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Strength and ductility of concrete cylinders confined with FRP composites

机译:FRP复合材料限制的混凝土圆筒的强度和延展性

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摘要

Based on results from more than 300 specimens of fiber reinforced polymer (FRP) confined concrete cylinders covering a wide range of parameters, the confinement effect and failure mechanisms are analyzed. Special attention is given to predict whether FRP-confined concrete cylinder has a strain-hardening or a strain-softening response. In the case of FRP-confmed concrete cylinder with a strain-hardening response, it is found that the ultimate Poisson's ratio of FRP-confined concrete trends to an asymptotic value. Through calculation of the ultimate Poisson's ratio, and according to strain compatibility, the ultimate strain of FRP-confined concrete can be predicted. Moreover, by comparing with a lot of existing experimental data, the proposed models are quite simple and still accurate enough, which can be applied to the concrete cylinders confined with various types of FRP composites. Besides, for the case of FRP-confined concrete cylinder with a strain-softening response, equations for predicting the maximum strength, peak strain, ultimate strength and ultimate strain are suggested in this paper.
机译:根据300多个纤维增强聚合物(FRP)约束混凝土圆柱体样本的结果,这些样本涵盖了广泛的参数,分析了约束作用和破坏机理。要特别注意预测FRP约束的混凝土圆柱体是否具有应变硬化或应变软化响应。在具有应变硬化响应的FRP约束混凝土圆柱体的情况下,发现FRP约束混凝土的最终泊松比趋向于渐近值。通过计算极限泊松比,并根据应变相容性,可以预测FRP约束混凝土的极限应变。此外,通过与大量现有的实验数据进行比较,所提出的模型非常简单且仍然足够准确,可应用于含各种类型FRP复合材料的混凝土圆柱体。此外,对于具有应变软化响应的FRP约束混凝土圆筒,本文提出了用于预测最大强度,峰值应变,极限强度和极限应变的方程。

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