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Shear capacity of HPFRC beams flexurally reinforced with steel and prestressed GFRP bars

机译:钢筋和预应力GFRP筋抗弯加固的HPFRC梁的抗剪承载力

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摘要

This paper presents the relevant results from an experimental program to assess the shear capacity of high performance fiber reinforced concrete (HPFRC) beams flexurally reinforced with a hybrid system of passive steel and prestressed GFRP longitudinal bars. Three series of two beams with different level of prestressing were tested. The effect of prestressing level on the shear capacity of the beams was the main investigated parameter. The results showed an enhancement of the load carrying capacity, ductility and energy absorption with the increase of the prestress level. Based on the obtained results, the predictive performance of the analytical formulations of CEB-FIP Model Code 2010 and RILEM TC 162-TDF for the shear capacity of FRC beams was assessed. Both formulations seem appropriate for design purposes, but the CEB-FIP formulation predicts more conservative shear capacity. The experimental results demonstrated that the prestressing level has an effect on the shear capacity much higher than the one recommended by the codes.
机译:本文介绍了一个实验程序的相关结果,以评估采用被动钢和预应力GFRP纵向钢筋的混合系统进行挠曲增强的高性能纤维增强混凝土(HPFRC)梁的抗剪承载力。测试了具有不同预应力水平的三个系列的两个梁。预应力水平对梁的抗剪承载力的影响是主要研究参数。结果表明,随着预应力水平的增加,承载能力,延展性和能量吸收得到增强。根据获得的结果,评估了CEB-FIP模型代码2010和RILEM TC 162-TDF的分析配方对FRC梁抗剪承载力的预测性能。两种配方似乎都适合设计目的,但CEB-FIP配方可预测更保守的剪切能力。实验结果表明,预应力水平对剪切能力的影响远高于规范所建议的水平。

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