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Seismic Retrofitting of RC Buildings Using CFRP and Post-Tensioned Metal Straps: Shake Table Tests

机译:用CFRp和后张拉金属带对RC建筑物进行抗震加固:振动台试验

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摘要

This article examines the effectiveness of two innovative retrofitting solutions at enhancing the seismic behaviour of a substandard reinforced concrete building tested on a shake table as part of the Pan-European funded project BANDIT. To simulate typical substandard construction, the reinforcement of columns and beam-column joints of the full-scale structure had inadequate detailing. An initial series of shake table tests were carried out to assess the seismic behaviour of the bare building and the effectiveness of a first retrofitting intervention using Post-Tensioned Metal Straps. After these tests, columns and joints were repaired and subsequently retrofitted using a retrofitting solution consisting of Carbon Fibre Reinforced Polymers and Post-Tensioned Metal Straps applied on opposite frames of the building. The building was then subjected to unidirectional and three-dimensional incremental seismic excitations to assess the effectiveness of the two retrofitting solutions at improving the global and local building performance. The article provides details of the above shake table testing programme and retrofitting solutions, and discusses the test results in terms of the observed damage, global damage indexes, performance levels and local strains. It is shown that whilst the original bare building was significantly damaged at a peak ground acceleration (PGA) of 0.15g, the retrofitted building resisted severe three-dimensional shake table tests up to PGA=0.60g without failure. Moreover, the retrofitting intervention enhanced the interstorey drift ratio capacity of the 1st and 2nd floors by 160% and 110%, respectively. Therefore, the proposed dual retrofitting system is proven to be very effective for improving the seismic performance of substandard buildings.
机译:本文研究了两种创新的改造解决方案在增强不合格钢筋混凝土建筑在振动台上测试的抗震性能方面的有效性,该建筑是泛欧洲资助的BANDIT项目的一部分。为了模拟典型的次标准结构,完整结构的柱和梁柱节点的加固没有足够的细节。进行了一系列初始振动台测试,以评估裸露建筑物的抗震性能以及使用后张紧金属带进行的首次改装干预的有效性。经过这些测试之后,对柱子和接头进行了修复,随后使用了由碳纤维增强聚合物和张紧后的金属带组成的改型解决方案,这些改型解决方案适用于建筑物的相对框架。然后,对建筑物进行单向和三维增量地震激励,以评估两种改造解决方案在改善整体和局部建筑物性能方面的有效性。本文提供了上述振动台测试程序和改造解决方案的详细信息,并根据观察到的损坏,整体损坏指数,性能水平和局部应变讨论了测试结果。结果表明,虽然原始裸露的建筑物在0.15g的峰值地面加速度(PGA)下受到了严重破坏,但翻新的建筑物抵抗了严重的三维振动台测试,直到PGA = 0.60g都没有失败。此外,改造干预措施使第一层和第二层的层间漂移率能力分别提高了160%和110%。因此,事实证明,所提出的双重改造系统对于改善不合格建筑物的抗震性能非常有效。

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