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Experimental and theoretical study on bond behavior of GFRP bars in steel fiber reinforced self compacting concrete

机译:GFRP筋在钢纤维自密实混凝土中粘结性能的试验与理论研究。

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摘要

To estimate the cracking and the deformational behavior of steel fiber reinforced selfcompacting concrete (SFRSCC) beams reinforced with glass fiber reinforced polymer (GFRP) bars, it is fundamental to understand the interfacial bond behavior of embedded bars. Hence, the evaluation of the bond behavior between GFRP and (SFRSCC) was investigated in this study. A closed-form formulation was derived, adopting a new local bond stress-slip relationship. Furthermore, an experimental program composed of pullout bending tests was carried out in order to assess the influence of the following parameters on the bond behavior: bar diameter, bar surface treatment, embedment length and SFRSCC cover thickness. Finally,a numerical simulation was performed with a FEM-based computer program in order to simulate the bond behavior between GFRP bar and SFRSCC by means of a non-linear bond-slip relationship assigned to the interface finite element. The predictive performance of the theoretical models was appraised by comparingexperimental and numerical results.
机译:为了评估玻璃纤维增​​强聚合物(GFRP)钢筋加固的钢纤维增强自密实混凝土(SFRSCC)梁的开裂和变形行为,了解嵌入式钢筋的界面粘结行为至关重要。因此,在这项研究中研究了对GFRP和(SFRSCC)之间的键行为的评估。推导了一种封闭形式的公式,采用了新的局部键应力-滑动关系。此外,为了评估以下参数对粘结性能的影响,进行了由拉拔弯曲试验组成的实验程序:钢筋直径,钢筋表面处理,包埋长度和SFRSCC覆盖层厚度。最后,使用基于FEM的计算机程序进行了数值模拟,以通过分配给界面有限元的非线性粘结-滑移关系来模拟GFRP筋和SFRSCC之间的粘结行为。通过比较实验和数值结果对理论模型的预测性能进行了评估。

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