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Brickwork wall models strengthened with diagonal and horizontal GFRP strips

机译:砖砌墙模型加强了对角线和水平GFRP条带

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The use of fiber reinforced polymers (FRPs) as external bonded (EB) strengthening of unreinforced brickwork masonry has became a common intervention technique for restoration of masonry walls damaged by seismic actions with the aim to improve the capacity under in-plane shear loading. The exact knowledge of the behavior of system composed by masonry and EB FRP strips through the interaction mechanism between strengthening and substrate is essential for the effectiveness of interventions based on the use of FRP strips. This paper provides an investigation on the behaviour of unreinforced and reinforced masonry walls made with solid clay bricks in scale 1/3rd, considering the presence of different types of masonry, such as historic and modern, and different configuration of the GFRP strengthening. Three walls, characterized by double T shape, were tested under combined compression and shear loading. Two of them were strengthened after damage using, respectively, diagonal and horizontal EB GFRP strips; another one was strengthened with horizontal GFRP strips without damage and subjected to the same loading path until failure. The response of all models is illustrated and discussed considering the walls' shear strength and effects on the failure mechanism due to diagonal and horizontal EB GFRP strips.
机译:使用纤维增强聚合物(FRPS)作为外部粘合(EB)加强未合成的砖砌砌体,成为一种常见的干预技术,用于恢复因地震动作损坏的砌体墙壁,其目的是提高面内剪切载荷的容量。通过基于FRP条带的干预措施的相互作用机制来确切地了解由砌体和EBFRP条带通过相互作用机制组成的系统的行为至关重要。本文展示了在1/3的规模上用固体粘土砖制成的不合因和强化砌体墙的行为调查,考虑到不同类型的砌体,如历史和现代,不同的GFRP强化配置。在组合压缩和剪切载荷下测试三壁,其特征在于双T形。使用损坏后,其中两种使用,分别是对角线和水平EB GFRP条带来的;通过水平GFRP条带来不损坏并经受相同的装载路径而加强了另一个,直至发生故障。示出并讨论了所有模型对所有模型的响应,考虑到壁的剪切强度和对由于对角线和水平EB GFRP条引起的故障机制的影响。

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