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Retrofitting of RC girders using pre-stressed CFRP sheets

机译:使用预应力CFRP板加固RC梁

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摘要

Pre-stressing of existing structures using steel cables, FRP cables or FRP laminates has been successfully tried in the past. Retrofitting of beams using pre-stressed laminates does not utilize the full strength of the FRP due to de-bonding of the laminates before the fibre fracture. In the present study attempt has been made to overcome this problem by replacing the FRP laminates by the FRP sheets. In the present paper the effect of initial damage level and pre-stress level on strength, stiffness, cracking behaviour and failure mode of girders retrofitted using pre-stressed CFRP sheets has been studied. The results indicate that rehabilitation of initially damaged girders by bonding pre-stressed CFRP sheets improves the flexural behaviour of beams appreciably. However, it has been observed that with increase in pre-stressing force the load carrying capacity of the girders increases up to a particular level up to which the mode of failure is fibre fracture. Thereafter, the mode of failure shifts from fibre fracture to debonding and there is no appreciable increase in load carrying capacity with further increase in pre-stressing force.
机译:过去已经成功地尝试了使用钢缆,FRP电缆或FRP层压板对现有结构进行预应力。由于在纤维断裂之前层压板的脱粘,使用预应力层压板的梁改型没有利用FRP的全部强度。在本研究中,已经尝试通过用FRP片代替FRP层压板来克服此问题。本文研究了初始损伤水平和预应力水平对采用预应力CFRP板加固的大梁的强度,刚度,开裂行为和破坏模式的影响。结果表明,通过粘结预应力CFRP板来修复最初受损的大梁可以显着改善梁的抗弯性能。然而,已经观察到,随着预应力的增加,大梁的承载能力增加到特定水平,在该特定水平上,破坏模式是纤维断裂。此后,破坏的方式从纤维断裂转变为脱粘,并且随着预应力的进一步增加,承载能力没有明显增加。

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