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Dapped-End Strengthening of Full-Scale Prestressed Double Tee Beams with FRP Composites

机译:FRP复合材料全尺寸预应力双三通梁的端部加固

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The unusual shape of the dapped-end beam develops a severe stress concentration at the re-entrant corner. If suitable reinforcement is not provided close to the re-entrant corner, the diagonal tension crack may grow rapidly and failure may occur with little or no warning. This paper reports the testing of three full-scale prestressed concrete (PC) double tee beams (five tests) in shear at the re-entrant corner. One dapped-end of each beam was reinforced with internal steel reinforcement as a bench mark and the other was strengthened with externally bonded carbon fiber reinforced polymer (CFRP) laminates. Of the two CFRP strengthened dapped-ends one used one-ply externally bonded CFRP reinforcement and the other two-ply externally bonded CFRP reinforcement with a U-anchor. The tests revealed that the reinforcement arrangements have significant influence on the member response. For one of the CFRP cases, the application of the anchor was such that failure by fiber rupture rather than peeling was achieved. Results from design computations were confirmed.
机译:端部光束的不寻常形状在凹角处产生了严重的应力集中。如果在凹角附近没有提供合适的钢筋,则对角线张力裂纹可能会迅速增长,并且可能会在很少或没有警告的情况下发生故障。本文报告了在凹角处的三个全尺寸预应力混凝土(PC)双三通梁的试验(五个试验)。每根横梁的一个末端通过内部钢质增强作为基准来增强,而另一根则通过外部粘结的碳纤维增强聚合物(CFRP)层压板进行增强。在两个CFRP加固的封端中,一个使用一层外部粘结的CFRP增强材料,而另一个使用U形锚固件进行两层外部粘结的CFRP增强材料。测试表明,钢筋布置对构件的响应有重要影响。对于其中一种CFRP案例,使用锚钉的原因是通过纤维断裂而不是剥离来实现破坏。设计计算的结果得到确认。

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