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Stress along tensile lap-spliced fibre reinforced polymer reinforcing bars in concrete

机译:混凝土中搭接搭接纤维增强聚合物增强筋的应力

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摘要

A theoretical study was carried out to investigate stress along tensile lap-spliced spaced or bundled fibre reinforced polymer (FRP) bars in concrete-. R. Tepfers developed a mathematical model, which could be applied for any type of reinforcing bar, based on the modulus of displacement theory. The mathematical model can predict the bond stress and stresses in the reinforcing bars and the surrounding concrete. In this paper, the model developed by Tepfers was represented by applying the modulus of displacement theory, and theoretical predictions are compared with the experimental results from testing 16 large-scale concrete beams. Good agreement between the theoretical values and experimental results was observed at three stages of loading. Recommendations for investigating the modulus of displacement from pullout tests have been included. Lastly, the maximum average bond stress of spliced FRP bars can be estimated using the ultimate failure pattern analysis, in which the contributions of the splitting resistance were included.
机译:进行了理论研究,以研究混凝土中拉伸搭接拼接的间隔或成束的纤维增强聚合物(FRP)筋的应力。 R. Tepfers基于位移模量理论开发了一种数学模型,该模型可用于任何类型的钢筋。该数学模型可以预测粘结应力以及钢筋和周围混凝土中的应力。本文采用位移模量理论表示由Tepfers开发的模型,并将理论预测与测试16条大型混凝土梁的实验结果进行比较。在加载的三个阶段观察到理论值和实验结果之间的良好一致性。研究拔模试验位移模量的建议已包括在内。最后,可以使用极限破坏模式分析来估计拼接的FRP筋的最大平均粘结应力,其中包括抗劈裂性的贡献。

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