Protchenko Kostiantyn, Leśniak Przemysław, Szmigiera Elżbieta, Urbański Marek
Department of Civil Engineering, 16 Armii Ludowej Av., Warsaw University of Technology, 00-637 Warsaw, Poland.
Materials (Basel). 2021 Feb 2;14(3):693. doi: 10.3390/ma14030693.
Many studies on Fibre-Reinforced Polymers Reinforced Concrete (FRP-RC) beams tested in flexure have been performed by various researchers around the world. This work presents the results of statistical and mathematical analyses based on experimental data; 102 samples were collected and supplemented from 16 different scientific papers. The load capacity of the beams determined on the basis of the tests was compared with the load capacity calculated on the basis of the recommendations of ACI 440.1R-15. The results obtained from experimental studies showed that for 91.4% of the samples, the underestimation of the load capacity on average was equal to 15.2% of theoretical, and for 33.3% of the beams, the load capacity was overestimated by 26.7%. The paper proposes a new empirical coefficient incorporating material parameters to be implemented into ACI 440.1R-15 flexural design approach in order to improve the accuracy of this model in scope of the nominal flexural strength capacity of FRP-reinforced beams estimation. Modifications to flexural design of FRP-RC beams with the use of ACI 440.1R-15 design code were proposed. As a result, the reliability of the analytical model is increased; therefore, the new model guarantees higher safety and cost efficiency of designed concrete structures reinforced with FRP bars.
世界各地的众多研究人员对纤维增强聚合物增强混凝土(FRP-RC)梁进行了受弯试验。本文基于实验数据给出了统计和数学分析结果;从16篇不同的科学论文中收集并补充了102个样本。将试验确定的梁的承载能力与根据美国混凝土学会(ACI)440.1R-15建议计算的承载能力进行了比较。实验研究结果表明,对于91.4%的样本,平均承载能力低估量等于理论值的15.2%,对于33.3%的梁,承载能力高估了26.7%。本文提出了一个纳入材料参数的新经验系数,以应用于ACI 440.1R-15弯曲设计方法中,从而在FRP增强梁的名义抗弯强度能力估算范围内提高该模型的准确性。提出了使用ACI 440.1R-15设计规范对FRP-RC梁弯曲设计进行修改。结果,分析模型的可靠性提高了;因此,新模型保证了用FRP筋增强的混凝土结构设计具有更高的安全性和成本效益。