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Seismic retrofit of reinforced concrete short columns by CFRP materials

机译:CFRP材料对钢筋混凝土短柱的抗震加固。

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Nowadays, reinforcing buildings or bridges against earthquake damage is a real technico-economic challenge. Composite materials applied by the wet lay-up method have been the main reinforcement technology for civil engineering structures since the 1990s. The research developed in this paper concerns seismic reinforcement. The main objectives are to evaluate CFRP's contribution to mechanical and energetic performance and to the modification of the cracking pattern on short columns. During earthquakes, short columns undergo shear stress due to their low resistance to high imposed horizontal displacements. Eight short columns were tested; their longitudinal reinforcement was higher than the Eurocode 8 upper limit whereas transverse reinforcement was insufficient, in order to ensure shear failure. Seven were continuously or discontinuously reinforced by CFRP or GFRP. They were tested under a constant compression load combined with a horizontal quasi-static cyclic load. It was therefore possible to evaluate the efficiency of such reinforcement by measuring the gain in terms of load and ductility.
机译:如今,加固建筑物或桥梁以防地震破坏是一项真正的技术经济挑战。自1990年代以来,通过湿法铺层法应用的复合材料一直是土木工程结构的主要加固技术。本文开展的研究涉及抗震加固。主要目的是评估CFRP对机械性能和高能性能的贡献,以及对短柱裂化模式的改进。在地震期间,短柱由于对高水平位移的抵抗力低而承受剪应力。测试了八根短柱;它们的纵向钢筋高于欧洲规范8的上限,而横向钢筋不足以确保剪切破坏。 CFRP或GFRP连续或不连续地加固了七个。它们在恒定压缩载荷和水平准静态循环载荷的共同作用下进行了测试。因此,可以通过测量载荷和延展性方面的增益来评估这种加固的效率。

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