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Experimental response of masonry walls in-plane loading strengthened with GFRP strips

机译:GFRP条增强砌体墙面内荷载的实验响应

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摘要

In Italian seismic areas brickwork or stone masonry walls are commonly present in historic buildings. In recent years, the strengthening of masonry walls with external bonded (EB) fibre reinforced polymers (FRPs) has been increased to improve the tensile capacity of masonry that is normally weak. Many aspects of this strengthening method are not yet completely known; in particular, the debonding mechanisms of FRP strips need to be analysed through more investigation.The objectives have been, on one side, to investigate the behaviour of single-story shear brickwalls under in-plane loading with and without strengthening by Glass-FRP strips and, on the other hand, to analyze the mechanisms of debonding. Two experimental walls, built with historic solid clay bricks in scale 1/3rd, were subjected to precompression to simulate actual loading condition in masonry building for service loads and tested under cyclic shear force. One was strengthened after damage with EB GFRP strips - and then once again - subjected to the same loading until failure; another one was strengthened with GFRP strips without damage and subjected to the same path of loading until failure. The response of both models are presented and compared; finally, failure mechanisms are discussed.
机译:在意大利地震区,历史建筑中通常存在砖砌或砌石墙。近年来,增加了用外部粘结(EB)纤维增强聚合物(FRP)加固砌体墙的能力,以改善通常较弱的砌体的抗拉能力。这种加固方法的许多方面尚未完全了解。特别是需要进一步研究玻璃钢带的脱粘机理。一方面,目的是研究单层剪力墙在有玻璃纤维增​​强或无玻璃钢增强的情况下在平面荷载下的行为。另一方面,分析脱胶机理。对两块实验墙(用历史上比例为1/3的实心粘土砖建造)进行预压缩,以模拟砌体建筑中的实际载荷条件以进行服务载荷,并在循环剪切力下进行测试。一根破损后用EB GFRP条加固,然后再一次承受相同的载荷直至失效;另一根则用GFRP条加固,没有损坏,并承受相同的载荷路径直至失效。提出并比较了两种模型的响应;最后讨论了失效机理。

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