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Seismic behaviour of deficient RC frames strengthened with CFRP composites

机译:CFRp复合材料加固缺陷钢筋混凝土框架的抗震性能

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摘要

A full-scale two-storey RC building with poor detailing in the beam–column joints was tested on a shake table as part of the European research project ECOLEADER. After the initial tests which damaged the structure, the frame was strengthened using carbon fibre reinforced materials (CFRPs) and re-tested. This paper investigates analytically the efficiency of the strengthening technique at improving the seismic behaviour of this frame structure. The experimental data from the initial shake table tests are used to calibrate analytical models. To simulate deficient beam–column joints, models of steel–concrete bond-slip and bond-strength degradation under cyclic loading are considered. The analytical models are used to assess the efficiency of the CFRP rehabilitation using a set of medium to strong seismic records. The CFRP strengthening intervention enhanced the behaviour of the substandard beam–column joints, and resulted in substantial improvement of the seismic performance of the damaged RC frame. It is shown that, after the CFRP intervention, the damaged building would experience on average 65% less global damage compared to the original structure if it was subjected to real earthquake excitations.
机译:作为欧洲研究项目ECOLEADER的一部分,在振动台上对一栋完整的两层楼高RC建筑进行了详细测试,其梁柱连接处的细节不良。在最初的测试损坏了结构之后,使用碳纤维增强材料(CFRP)对框架进行了加固,然后进行了重新测试。本文分析研究了加固技术在改善该框架结构抗震性能方面的效率。来自初始振动台测试的实验数据用于校准分析模型。为了模拟不足的梁柱节点,考虑了循环荷载作用下钢混凝土粘结滑移和粘结强度退化的模型。分析模型用于评估CFRP修复的效率,其中使用了一组中到强地震记录。 CFRP加强干预增强了不合标准的梁柱节点的性能,并大大改善了受损RC框架的抗震性能。结果表明,在CFRP的干预下,如果建筑物受到真正的地震激励,则与原始结构相比,其遭受的全球平均损害要平均低65%。

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