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Experimental and FE study on RC one-way slabs upgraded with FRP composites

机译:FRP复合材料增强RC单向板的试验与有限元研究

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The use of externally bonded Fiber Reinforced Polymer (FRP) composites as a means of upgrading the flexural capacity of Reinforced Concrete (RC) one-way slabs is experimentally and numerically investigated in this study. A total of four groups of eight slabs were tested under four-point bending. The two slabs of the first group were left unstrengthened to be used as control specimens. The two slabs of the second group were externally strengthened with adhesively bonded pultruded, pre-cured CFRP plates. The four slabs of the last two groups were externally upgraded with unidirectional carbon (or E-glass) fiber fabric impregnated with an epoxy resin. In addition to the experimental program, a numerical investigation utilizing nonlinear Finite Element (FE) analysis was conducted using LS-DYNA software. Besides the eight slabs tested in this study, another eleven slabs were collected from the literature for the purpose of finite element validation. A comparison was made between the experimental and numerical results and good agreement was achieved. Based on FE validation, the numerical analysis was extended to include additional cases to study the effect of axial FRP stiffness and FRP-to-concrete width ratio on the flexural performance of upgraded slabs. As a result of the numerical study, new stiffness and reinforcement parameters were introduced in this research. These parameters were employed in the development of two new formulas for predicting the FRP debonding strain and percent gain in flexural capacity of FRP-strengthened slabs.
机译:在本研究中,通过实验和数值研究了使用外部粘结的纤维增强聚合物(FRP)复合材料作为提高钢筋混凝土(RC)单向板抗弯能力的方法。在四点弯曲下总共测试了四组八个板。第一组的两个平板未作任何加固,以用作对照样本。第二组的两个板在外部用拉挤的,预固化的CFRP板进行了外部加固。后两组中的四块平板从外部进行了浸渗有环氧树脂的单向碳(或E玻璃)纤维织物的升级。除实验程序外,还使用LS-DYNA软件进行了利用非线性有限元(FE)分析的数值研究。除了在本研究中测试的八块板之外,还从文献中收集了另外十一块板用于有限元验证。实验结果与数值结果进行了比较,取得了较好的一致性。基于有限元验证,数值分析扩展到了其他案例,以研究轴向FRP刚度和FRP与混凝土的宽度比对升级板的抗弯性能的影响。数值研究的结果是,本研究引入了新的刚度和加固参数。这些参数被用于开发两个新公式,以预测FRP脱粘应变和FRP加固板的抗弯能力的百分比增加。

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