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Seismic retrofitting of damaged exterior beam-column joints using fibre reinforced plastic composite-steel plate combined technique

机译:纤维增强塑料复合钢板组合技术对受损梁柱节点的抗震加固

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摘要

A conventional gravity load design philosophy for reinforced concrete (RC) structures has been slowly replaced by seismic design since the 1970s. But, till recently, capacity design and ductile detailing were not strictly implemented in practice in many developing countries which are prone to seismic hazard. In the present study, performance of exterior beam-column joints designed based on ductile and non-ductile philosophy has been studied under cyclic load. It is found that although the incorporation of ductile detailing has considerably improved the seismic behaviour of the structural component, it could not assure the damage propagation in a safe zone. Moreover, in both specimens, the main damage has been concentrated in the joint zone irrespective of ductile detailing. Further, the damaged specimens were adequately repaired and suitably retrofitted using fibre reinforced plastic and steel plate and tested again under the same cyclic load. The retrofitted 'NonDuctile' specimen, as proposed in this study, could not only be able to regain its original performance (in terms of strength deterioration, stiffness degradation, energy dissipation), but has also shown improved performance in comparison to the original ones which is ideally desirable as well. Further, the retrofitted 'Ductile' specimen has shown a promising aspect of the proposed retrofitting strategy for seismically damaged components.
机译:自1970年代以来,用于钢筋混凝土(RC)结构的传统重力荷载设计理念已逐渐被地震设计所取代。但是,直到最近,在许多容易遭受地震危害的发展中国家,能力设计和延性细化还没有严格执行。在本研究中,已经研究了在循环载荷下基于延性和非延性原理设计的外部梁柱节点的性能。已发现,尽管结合了延展性细部设计已大大改善了结构部件的抗震性能,但不能确保损伤在安全区域内的传播。此外,在这两个标本中,不管韧性细节如何,主要破坏都集中在关节区域。此外,使用纤维增强塑料和钢板对损坏的样品进行了充分的修复和适当的翻新,并在相同的循环载荷下再次进行了测试。这项研究提出的经过改造的“ NonDuctile”试样不仅能够恢复其原始性能(在强度下降,刚度下降,能量耗散方面),而且与原始样品相比,其性能也得到了改善。也是理想的。此外,经过改装的“ Ductile”标本已显示出针对地震损坏部件的拟议改装策略的一个有希望的方面。

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