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Experimental Analysis of Dynamic Effects of FRP Reinforced Masonry Vaults

机译:FRP砌体拱顶动力效应的试验分析。

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摘要

An increasing interest in the preservation of historic structures has produced a need for new methods for reinforcing curved masonry structures, such as arches and vaults. These structures are generally very ancient, have geometries and materials which are poorly defined and have been exposed to long-term historical movements and actions. Consequently, they are often in need of repair or reinforcement. This article presents the results of an experimental study carried out in the laboratory and during on-site testing to investigate the behaviour of brick masonry vaults under dynamic loading strengthened with FRPs (Fiber Reinforced Polymers). For the laboratory tests, the brick vaults were built with solid sanded clay bricks and weak mortar and were tested under dynamic loading. The experimental tests were designed to facilitate analysis of the dynamic behaviour of undamaged, damaged and reinforced vaulted structures. On-site tests were carried out on an earthquake-damaged thin brick vault of an 18th century aristocratic residence in the city of L’Aquila, Italy. The provision of FRP reinforcement is shown to re-establish elastic behavior previously compromised by time induced damage in the vaults.
机译:对保存历史建筑的兴趣与日俱增,因此需要一种新的方法来加固拱形和拱顶等弯曲的砖石结构。这些结构通常非常古老,其几何形状和材料定义不清,并长期受到历史运动和影响。因此,他们经常需要维修或加固。本文介绍了在实验室和现场测试过程中进行的一项实验研究的结果,以研究在FRP(纤维增强聚合物)增强的动态载荷下砖砌拱顶的行为。对于实验室测试,砖拱顶是用实心砂土砖和弱砂浆建造的,并在动态载荷下进行了测试。设计实验测试旨在促进对未损坏,损坏和加固的拱形结构的动力性能进行分析。在意大利拉奎拉(L'Aquila)市一座18世纪贵族住宅的地震损坏的薄砖金库中进行了现场测试。显示了提供FRP增强材料的作用,可以重建先前因时间引起的穹顶损坏而受损的弹性行为。

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