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Effects of trapezoidal cross-section dimensions on the behaviours of CFRP SCC beams

机译:梯形横截面尺寸对CFRP SCC梁行为的影响

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This study investigates the behaviour of trapezoidal cross-sections self-compacting reinforced concrete beams under flexural failure, with and without strengthening with carbon fibre reinforced polymer CFRP. The studied beams were divided into two groups according to their cross-sections; each group included five beams, and the first group (T_(20)) were those with trapezoidal cross-sections with dimensions length 1,600 × height 260 × width of 160 mm at the bottom and 200 mm at the top, while second group (T_(24)) consisted of those with trapezoidal cross-sections with dimensions length 1,600 × height 260 × width of 160 mm at the bottom and 240 mm at the top. The experimental programme included studying the effects of top width on the flexural behaviour of beams with trapezoidal cross-sections, in addition to studying the effect of reinforcing those beams with varying numbers, locations, and methods of placement of CFRP strips. The experimental results showed that trapezoidal cross-sections with 240 mm top width gave higher ultimate load capacity by 4 to 11.54%, as well as offering lower deflection, compared to trapezoidal cross-sections with 200 mm top width. In addition, strengthening beams with CFRP strips leads to an increase in the ultimate load capacity by 4 to 24% in trapezoidal cross-section beams, reducing their deflection and delaying the appearance of the first crack in the concrete. It was found that applying CFRP strips to the maximum moment region increased the ultimate load capacity by an average of 4.17 to 7.7 % in comparison to beams strengthened with strips applied along the beam
机译:本研究探讨弯曲破坏下梁梯形剖面自密实混凝土的行为,具有和不具有加强与碳纤维增强聚合物CFRP。所研究的光束被分成依据它们的截面两组;每组包括5条光束,并且所述第一组(T_(20))是那些与尺寸长高度260 1600××宽度在底部160毫米并且在顶部200毫米梯形的横截面,而第二组(T_ (24))由那些具有梯形横截面的尺寸为长度1600×高260×的底部160毫米并且在顶部240毫米宽度。实验方案包括研究与梯形剖面梁弯曲行为顶部宽度的效果,除了学习增强那些的效果梁的不同数目,位置和CFRP条的放置的方法。实验结果表明,240毫米的顶宽度由4得到更高的极限载荷容量11.54%,以及提供低偏转该梯形横截面,相对于200毫米的顶宽度的梯形横截面。此外,加强梁CFRP条导致由4〜24%的梯形横截面梁,降低其偏转和延缓混凝土初裂的出现增加了最终的负载能力。已经发现,施加CFRP条的最大力矩通过区域的平均的4.17相比于用条加固梁提高的最终负载能力7.7%沿梁施加

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