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Experimental investigations of repair of pre-damaged steel-concrete composite beams using CFRP laminates and mechanical anchors

机译:CFRP层板与机械锚修复损伤预应力钢-混凝土组合梁的试验研究。

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摘要

This paper investigates the flexural performance of pre-damaged steel-concrete composite beams repaired using externally-bonded carbon fiber-reinforced polymer (CFRP) laminates with and without mechanical anchors. A total of 10 beams were prepared, one beam was left undamaged, whereas nine beams were artificially damaged by cutting different U-shaped notches in the bottom flange at the beams' mid-span that resulted in 45%, 73% and 100% losses in the flange thickness. Three damaged beams were not strengthened, whereas six damaged beams were repaired in flexure using externally-bonded CFRP laminates with and without mechanical anchors. The load-carrying capacities of the unstrengthened beams with damage states of 45%, 73% and 100% were approximately 11%, 23%, and 50% lower than that of the control-undamaged beam, respectively. The CFRP repair schemes were capable of restoring the original load capacity of the damaged beams with the lower damage state of 45%. For the beams with the higher damage states of 73% and 100%, the repair schemes could restore a maximum of 81% of the original load capacity. The inclusion of mechanical anchors in the repair regime improved the strength gain from 15% to 19% and from 46% to 63% for the beams with 45% and 100% damage states, respectively, relative to the strength of the corresponding damaged-unstrengthened beam.
机译:本文研究了使用带和不带机械锚的外部粘结碳纤维增强聚合物(CFRP)层压板修复的预损伤钢-混凝土复合梁的抗弯性能。总共准备了10根梁,其中一根未损坏,而通过在梁的中跨处的底部法兰上切割不同的U形槽口,人为损坏了9根梁,造成45%,73%和100%的损失在法兰厚度上。 3根受损的梁没有得到加强,而6根受损的梁使用带有和不带有机械锚的外部粘结CFRP层压板进行了弯曲修复。损伤状态分别为45%,73%和100%的未加强梁的承载能力分别比未受损的控制梁低约11%,23%和50%。 CFRP修复方案能够以45%的较低损坏状态恢复损坏梁的原始承载能力。对于损伤状态为73%和100%的较高梁,修复方案最多可以恢复原始载荷能力的81%。相对于相应的破损未加强的强度,在修复状态中包含机械锚将具有45%和100%损伤状态的梁的强度提高分别从15%提高到19%和从46%提高到63%光束。

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