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An experimental and numerical study of the effect of thickness and length of CFRP on performance of repaired reinforced concrete beams

机译:CFRP厚度和长度对修复钢筋混凝土梁性能影响的试验和数值研究。

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摘要

Experimental and numerical analyses are performed to predict the loading carrying capacity of reinforced concrete beams strengthened with carbon fibre reinforced plastics (CFRP) composites. The effect of CFRP thickness and length on the failure load and ductility is studied and curves of initial cracking load, ultimate load, stiffness, ductility and fibre stresses are presented. The results of tests and simulations show a good agreement and indicate that, in contrast with a control beam, initial cracking loads of strengthened beams increase slightly, whilst stiffness and ductility increase more and the ultimate loads increase considerably. Stresses in the carbon fibre decrease with the increase of fibre sheet thickness. Cracking patterns of strengthened beams are improved. Crack propagation varies with the change of fibre length and results in the variation of failure mode of beams. Variation of the length of CFRP sheet is the main reason of variation of the stress of interface. Therefore, debonding failure, unless adequately considered in the design process, may significantly decrease the effectiveness of the strengthening.
机译:进行了实验和数值分析,以预测碳纤维增强塑料(CFRP)复合材料增强的钢筋混凝土梁的承载能力。研究了CFRP厚度和长度对破坏载荷和延性的影响,并给出了初始开裂载荷,极限载荷,刚度,延性和纤维应力的曲线。试验和模拟结果表明,与控制梁相比,加固梁的初始开裂荷载略有增加,而刚度和延性则有所增加,而最终荷载则显着增加。碳纤维中的应力随着纤维片厚度的增加而降低。加强梁的开裂模式得到改善。裂纹扩展随纤维长度的变化而变化,并导致梁破坏模式的变化。 CFRP片材长度的变化是界面应力变化的主要原因。因此,除非在设计过程中进行了充分考虑,否则脱胶失败可能会大大降低加固的有效性。

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