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Analytical Stress-Strain Relationship for Concrete Confined by Steel Stirrups and/or FRP Jackets

机译:钢箍筋和/或FRP夹套约束的混凝土的分析应力-应变关系

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摘要

This paper presents a plain strain analytical model, based on the elasticity theory, to determine the confining pressures of transverse reinforcements on the concrete core of a reinforced concrete member. The analytical evaluation of the confining pressures was first carried out on reinforced sections with square and circular stirrups, and subsequently on reinforcement configurations of greater complexity with square and rectangular stirrups and supplementary cross ties. Finally, the model has been used to evaluate the confining pressures applied by external wrapping in any material [fiber-reinforced polymer (FRP), S-glass, steel, etc.] and to design better combinations of techniques and confinement materials. In order to obtain the stress-strain curves due to passive confinement, an analogy between square and circular sections has been introduced. In this way, any active confinement model derived by triaxial tests on cylindrical specimens can be used. The model has been validated by comparing its predictions with results from existing models and experimental tests.
机译:本文基于弹性理论,提出了一种简单的应变分析模型,用于确定钢筋混凝土构件的混凝土芯上横向钢筋的约束压力。围压的分析评估首先在具有方形和圆形箍筋的增强型材上进行,然后对具有方形和矩形箍筋和辅助横梁的复杂度更高的钢筋配置进行。最后,该模型已用于评估外部包裹材料在任何材料[纤维增强聚合物(FRP),S玻璃,钢等中]施加的围压,并设计技术和围缝材料的更好组合。为了获得由于被动约束而产生的应力-应变曲线,引入了正方形和圆形截面之间的类比。通过这种方式,可以使用通过三轴测试得出的任何主动约束模型对圆柱试样进行分析。该模型已通过将其预测与现有模型和实验测试的结果进行比较而得到验证。

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