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Strength Profile Pattern of FRP-Reinforced Concrete Structures: A Performance Analysis through Finite Element Analysis and Empirical Modeling Technique

机译:FRP钢筋混凝土结构强度型材模式:通过有限元分析和经验造型技术进行性能分析

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摘要

Limited research work is available in the literature for the theoretical estimates of axial compressive strength of columns reinforced with fiber reinforced polymer (FRP) rebars. In the present work, an experimental database of 278 FRP-reinforced concrete (RC) compression members was established from the literature to recommend an empirical model that can accurately predict the axial strength (AS) of GFRP-RC specimens. An initial assessment of 13 different previously anticipated empirical models was executed to achieve a general form of the AS model. Finally, a new empirical equation for forecasting the AS of GFRP-RC short columns was proposed using the curve fitting and regression analysis technique. The performance of the proposed empirical model over the previous experimental database represented its higher accuracy as related to that of other models. For the further justification of the anticipated model, a numerical model of GFRP-RC columns was simulated using ABAQUS and a wide parametric study of 600 GFRP-RC samples was executed to generate a numerical database and investigate the influence of various parameters using numerical and empirical models. The comparison between theoretical and numerical predictions with R2 = 0.77 indicted that the anticipated empirical model is accurate enough to apprehend the AS of FRP-RC specimens.
机译:有限的研究工作在文献中提供了用纤维增强聚合物(FRP)钢筋加固的柱轴压抗压强度的理论估计。在本作本作中,从文献中建立了278个FRP钢筋混凝土(RC)压缩构件的实验数据库,以建议可以准确地预测GFRP-RC样本的轴向强度(AS)的实证模型。执行了13个不同预期的经验模型的初步评估,以实现作为模型的一般形式。最后,采用曲线拟合和回归分析技术提出了一种预测GFRP-RC短柱的新经验方程。在先前的实验数据库中提出的实证模型的性能代表了与其他模型相关的更高的准确性。对于预期模型的进一步理由,使用ABAQU模拟GFRP-RC列的数值模型,并执行了600 GFRP-RC样本的宽参数研究以产生数值数据库,并使用数值和经验研究各种参数的影响楷模。 R2 = 0.77的理论和数值预测之间的比较起来指出预期的经验模型足以准确地理解FRP-RC标本。

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