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Design Guidelines for Rapid Repair of Earthquake-Damaged Circular RC Bridge Columns Using CFRP

机译:使用CFRP快速修复地震损坏的圆形RC桥梁立柱的设计准则

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摘要

The main objective of this study was to develop a rapid and effective repair method using carbon fiber-reinforced polymer (CFRP) fabrics for earthquake-damaged circular RC bridge columns based on apparent damage states. A computational method was developed to estimate the shear resisted by concrete, spirals, and CFRP jacket and the confinement pressure provided by spirals and the CFRP jacket using measured strains at different damage states. It was concluded that even yielded spirals partially contribute to shear strength in damaged columns; however, their contribution to confinement is negligible. Based on this finding, repair design guidelines for standard columns were developed to aid bridge engineers in quickly determining the number of CFRP layers needed based on the apparent damage, column aspect ratio, diameter, and longitudinal steel ratio. In addition, a simple softened steel material modeling method was developed for use in pushover analysis of repaired columns, and good agreement was observed in terms of stiffness, dissipated energy, and strength between the measured and calculated responses.
机译:这项研究的主要目的是根据表观损伤状态,开发一种使用碳纤维增强聚合物(CFRP)织物的快速有效的修复方法,以用于地震破坏的圆形RC桥柱。开发了一种计算方法,以使用在不同损伤状态下测得的应变来估算混凝土,螺旋和CFRP护套抵抗的剪切力以及螺旋和CFRP护套提供的约束压力。得出的结论是,即使屈服的螺旋也部分地有助于损坏柱的抗剪强度。但是,它们对禁闭的贡献可忽略不计。基于此发现,制定了标准立柱的维修设计指南,以帮助桥梁工程师根据表观损伤,立柱长宽比,直径和纵向钢构比快速确定所需的CFRP层数。此外,开发了一种简单的软化钢材料建模方法,用于修复柱的推覆分析,并且在刚度,耗散能量以及所测得的响应与所计算的响应之间达到了良好的一致性。

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