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Flexure strengthening of lightweight reinforced concrete beams using carbon fibre-reinforced polymers

机译:使用碳纤维增强聚合物对轻型钢筋混凝土梁进行挠曲加固

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摘要

A series of 40 lightweight reinforced concrete (LWRC) beams of 1400 mm length and a rectangular cross section of 150 × 200 mm were cast, strengthened and then tested under four-point bending test to study the effectiveness of using externally applied carbon fibre-reinforced polymer (CFRP) composites as a method of increasing the flexural strength of under-reinforced LWRC beams. Parameters investigated include reinforcement ratio, ρ; ρ = 0.55ρ_b and ρ = 0.27 rb, CFRP sheet length; 600, 800 and 1000 mm, CFRP sheet width; beam width and half-beam width. Three types of strengthening schemes were used: jacketing covers the beam from bottom and two sides with total width of 500 mm, sheets at the tension side with width equal to beam width and sheets with width equal to half-beam width. Test results showed a limited increase in ultimate load-carrying capacity accompanied with some reduction in mid-span deflection for the strengthened beams. Among the strengthening schemes investigated, jacketing was the most effective for strength enhancement (about 41%) with respect to control beam; however, it reduced ductility significantly. An analytical model was proposed for predicting the ultimate load-carrying capacity of LWRC beams strengthened with CFRP composites.
机译:铸造,加固一系列40根长度为1400 mm,矩形横截面为150×200 mm的轻质钢筋混凝土(LWRC)梁,然后在四点弯曲试验下进行测试,以研究使用外加碳纤维增强材料的有效性聚合物(CFRP)复合材料作为增加欠增强LWRC梁抗弯强度的方法。研究的参数包括配筋率ρ; ρ=0.55ρ_b和ρ= 0.27 rb,CFRP片材长度; 600、800和1000毫米CFRP板宽;光束宽度和半光束宽度。使用了三种类型的加固方案:护套从底部和两侧覆盖梁,总宽度为500 mm,张紧侧的板宽度等于梁的宽度,板的宽度等于半梁的宽度。试验结果表明,极限承载力的增加有限,同时加固梁的中跨挠度有所降低。在研究的加固方案中,对于控制梁,护套是最有效的强度增强方法(约41%);但是,它显着降低了延展性。提出了一个分析模型来预测CFRP复合材料加固的LWRC梁的极限承载力。

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