外贴玻璃纤维框架节点抗震性能试验研究_Effects_of_Eccentricity_on_the_Seismic_Rehabilitation_Performance_of_Nonseismically_Detailed_Interior.pdfVIP
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Effects of Eccentricity on the Seismic Rehabilitation
Performance of Nonseismically Detailed Interior
Beamwide Column Joints
1 2 3
Bing Li ; Qian Kai, A.M.ASCE ; and Weichen Xue
Abstract: In this paper, the effects of eccentricity on the effectiveness of carbon-fiber-reinforced polymer (CFRP) or glass-fiber-reinforced
polymer (GFRP) in repairing the shear strength and ductility of nonseismically detailed beam-wide column joints have been evaluated. For
this purpose, four (two concentric and two eccentric) full-scale nonseismically detailed interior beamwide column joints were used as control
specimens. All four subassemblages were subjected to similar cyclic lateral displacement to provide the equivalent of severe earthquake
damage. The damaged control specimens were then repaired by filling their cracks with epoxy and externally bonding them with CFRP
sheets and GFRP sheets. These repaired specimens were then retested and their response histories were obtained. Hence, a total of eight
specimens were tested: four control, and four repaired. The response histories of the control and repaired specimens were then compared.
The results were compared through hysteretic loops, load-displacement envelopes, energy dissipation capacity, secant stiffness degradation,
and shear strength and damage indices. Moreover, the effectiveness of the proposed repair schemes in repairing the eccentric and concentric
joints was also compared. The present study demonstrates that proposed repair schemes can recover the performance of both damaged
reinforced concrete (RC) concentric and eccentric beam-wide column joints effectively. DOI: 10.1061/(ASCE)CC.1943-5614.0000287.
© 2012 American Society of Civil Engineers.
CE Database
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