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Seismic behavior of deficient reinforced concrete bridge piers confined with FRP - A fractional factorial analysis

机译:FRP约束的钢筋混凝土桥墩不足的抗震性能-分数因子分析。

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Material properties, amount of longitudinal and transverse steel, external confinement, axial load and shear span-depth ratio affect the lateral load capacity, ductility and failure mode of retrofitted bridge piers under seismic load. These parameters are considerably different in old reinforced concrete (RC) bridge piers compared to the seismically designed bridges. This research investigates the effects of these factors and their interactions on the limit states of carbon fiber reinforced polymer (CFRP) confined seismically deficient RC circular bridge piers using fractional factorial design method. CFRP-confined bridge piers are modelled using a fiber modelling approach and nonlinear static pushover analyses of the bridge piers are conducted in order to determine the sequence of different limit states such as yielding, buckling and fracture of reinforcement, and concrete crushing along with ductility capacity of the piers. This study shows that the shear span-depth ratio, yield strength and longitudinal reinforcement ratio, axial load and CFRP confinement significantly affect the lateral load capacity, ductility and the failure mode of retrofitted bridge piers under seismic load. Crown Copyright (C) 2016 Published by Elsevier Ltd. All rights reserved.
机译:材料特性,纵向和横向钢量,外部约束,轴向载荷和剪切跨度-深度比会影响地震荷载下加装式桥墩的侧向承载能力,延性和破坏模式。与抗震设计的桥梁相比,这些参数在旧钢筋混凝土(RC)桥墩中有很大不同。本研究使用分数阶因子设计方法研究了这些因素及其相互作用对碳纤维增强聚合物(CFRP)受限的抗震RC圆形桥墩的极限状态的影响。使用纤维建模方法对CFRP约束的桥墩进行建模,并对桥墩进行非线性静态推覆分析,以确定不同极限状态的顺序,例如屈服,屈曲和钢筋断裂,混凝土压碎以及延展性的码头。研究表明,在地震荷载作用下,剪力跨纵比,屈服强度和纵向配筋率,轴向载荷和CFRP约束会显着影响加固后桥墩的侧向载荷能力,延性和破坏模式。 Crown版权所有(C)2016,由Elsevier Ltd.发行。保留所有权利。

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