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Upgradation of gravity load designed sub-assemblages subjected to seismic type loading

机译:承受地震类型载荷的重力载荷设计子组件的升级

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In the present study, a methodology based on strength hierarchy has been proposed for upgradation of original gravity load designed (GLD) reinforced concrete (RC) structures. Exterior beam-column joint of an RC structure has been considered as the target sub-assemblage and the target strength of the deficient sub-assemblage was decided from that of a seismically designed 'Ductile' one. Three different types of upgradation schemes were investigated where shear- and flexural-strengthening were provided by Fiber Reinforced Plastics (FRP) and weak joint region of' 'GLD' sub-assemblage was upgraded by steel plate jacketing. The original ('GLD'-, 'NonDuctile'-, 'Ductile'-) and upgraded-sub-assemblages were investigated under repeated reverse cyclic loading. It was observed that the 'GLD' specimen seized to function under reverse loading and subsequent improvements, though not optimal, were observed from 'NonDuctile' and 'Ductile' specimens. It was further found out that the upgraded specimens showed considerable improvement in strength deterioration, stiffness degradation and energy dissipation. Further, the upgraded specimens with adequate energy dissipation could even be able to shift the plastic hinge from the joint face into the beam which was not observed even in original 'Ductile' specimen. The upgraded schemes are simple, practically feasible and efficient as well.
机译:在本研究中,已经提出了一种基于强度等级的方法,用于对原有重力荷载设计(GLD)钢筋混凝土(RC)结构进行升级。 RC结构的外部梁柱节点已被视为目标子组件,而不足的子组件的目标强度则由抗震设计的“韧性”子组件确定。研究了三种不同类型的升级方案,其中纤维增强塑料(FRP)提供了抗剪和抗弯加固功能,'GLD'组件的弱连接区域通过钢板夹套进行了升级。在反复反向循环载荷下研究了原始(“ GLD”-,“ NonDuctile”-,“ Ductile”-)和升级后的子组件。据观察,从“非延性”和“延性”试样中观察到“ GLD”试样在反向载荷下起作用,随后的改进(尽管不是最佳的)得到了改善。进一步发现,升级后的试样在强度劣化,刚度劣化和能量耗散方面显示出显着的改善。此外,升级后的标本具有足够的能量耗散,甚至可以将塑料铰链从接合面移到梁中,即使在原始的“韧性”标本中也没有观察到。升级后的方案简单,实用,高效。

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