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In-plane retrofitting of masonry panels with fibre reinforced composite materials

机译:纤维增强复合材料对砖石面板进行面内翻新

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Research activities carried out during the past years concerning the use of fibre reinforced polymers (FRP) as external reinforcement of masonry walls have shown that this system considerably improves structural stability and ductility with minimum increase in the load transmitted to foundations. However, different aspects of this retrofitting system should still be analyzed. The mechanical behaviour under in-plane compression and diagonal compression of clay masonry panels reinforced or repaired with carbon fibre reinforced polymer laminates is experimentally assessed in this paper. The results show that if correct retrofitting schemes are chosen, reinforcement and repairing with fibre reinforced polymers improves masonry behaviour, increasing ductility and, in some cases, ultimate strength and even stiffness. In this way, brittle behaviour and sudden failure of unreinforced masonry can be avoided. 【Keywords】Masonry;Fibre reinforced polymers;Composites;Retrofitting;Repair
机译:在过去的几年中,有关使用纤维增强聚合物(FRP)作为砌体墙的外部增强材料的研究活动表明,该系统可显着提高结构稳定性和延展性,同时最小化传递至地基的荷载。但是,仍应分析此改装系统的不同方面。本文通过实验评估了用碳纤维增强的聚合物层压板加固或修补的粘土砖砌体在面内压缩和对角压缩下的力学行为。结果表明,如果选择正确的改型方案,则使用纤维增强聚合物进行加固和修复会改善砌体性能,增加延展性,在某些情况下甚至会提高最终强度甚至刚度。以这种方式,可以避免脆性行为和未加固的砌体突然失效。 【关键词】砌体;纤维增强聚合物;复合材料;改型;修复

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