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Experimental studies on the seismic behavior of earthquake-damaged circular bridge columns repaired by using combination of near-surface-mounted BFRP bars with external BFRP sheets jacketing

机译:近表面安装的BFRP筋与外部BFRP板夹层组合修复地震破坏圆桥柱的抗震性能试验研究

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摘要

Rapid repair and retrofitting is increasingly urgent and significant for the earthquake-damaged columns. To restore the flexural strength, and also attempt to restore stiffness and deformation capacity of damaged columns, this paper proposes a repair technique using near-surface-mounted (NMS) basalt fiber reinforced polymer (BFRP) bars and BFRP sheets jacketing, and then four one-fourth scale earthquake-damaged reinforced concrete circular bridge columns repaired by the proposed technique are retested under the similar cyclic lateral load as the corresponding original columns. The repaired columns are compared with the original columns in the seismic behavior finally, and the results have shown that the flexural capacity of the repaired columns was restored and even enhanced; furthermore, the stiffness and the displacement capacity of repaired columns were restored to an extent that can meet the needs of a temporary repair and allow emergency service use after an earthquake. This implies that the repair technique is effective in restoring the flexural performance of the damaged circular bridge columns. (C) 2015 Elsevier Ltd. All rights reserved.
机译:对于地震损坏的立柱而言,快速维修和翻新正变得越来越紧迫且意义重大。为了恢复抗弯强度,并尝试恢复受损柱的刚度和变形能力,本文提出了一种修复技术,即使用近表面安装的(玄武岩)玄武岩纤维增强聚合物(BFRP)筋和BFRP板护套,然后使用四个对该技术修复的四分之一规模地震破坏的钢筋混凝土圆桥柱在与相应原始柱相似的循环侧向荷载下进行了重新测试。最后将修复柱与原始柱的抗震性能进行比较,结果表明,修复柱的抗弯能力得到恢复甚至提高。此外,修复后的柱子的刚度和位移能力得到了恢复,可以满足临时修复的需要,并可以在地震后用于紧急服务。这意味着修复技术可有效地恢复损坏的圆形桥柱的抗弯性能。 (C)2015 Elsevier Ltd.保留所有权利。

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