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Out-of-plane strength of brick masonry retrofitted with horizontal NSM CFRP strips

机译:卧式NSM CFRP板加固的砖砌体的平面外强度

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The magnitude of damage possible in unreinforced brick masonry construction subjected to high levels of out-of-plane loading is well understood. Due to the large global building stock of masonry structures, it is essential that efficient retrofitting techniques be developed. The use of fibre-reinforced polymer (FRP) strips has been shown to improve the load-carrying and displacement capacities of masonry sections subjected to out-of-plane loading. This paper presents the results of an experimental and theoretical investigation into the behaviour of modern clay brick masonry retrofitted with horizontally oriented FRP strips subjected to horizontal bending. Experimental tests were conducted on four masonry wallettes retrofitted with horizontal near-surface mounted (NSM) carbon FRP strips, subjected to horizontal bending. The specimens were tested in a vertical orientation with variation in vertical compressive loading. The application of compressive load improved the FRP confinement efficiency, and thus increased the maximum strength of the specimens. The primary failure modes were displacement induced (DI) debonding and FRP buckling. Mathematical models were developed to predict the moment at cracking and moment capacity for the specimens. The models explicitly account for the flexural strengths of the mortar and brick units, the torsional resistance of the bed joints, the NSM FRP, as well as the contributions to bed joint shear strength from the vertical compressive stress and friction. The proposed mathematical models were validated against the results of the experimental tests.
机译:众所周知,在未加固的砖石建筑中,承受高水平的平面外载荷时可能造成的破坏程度。由于全球大量的砖石结构建筑,开发有效的翻新技术至关重要。业已证明,使用纤维增强聚合物(FRP)板可改善承受平面外荷载的砌体截面的承载力和位移能力。本文介绍了对水平弯曲的FRP板进行水平弯曲改造的现代黏土砖砌体的性能进行实验和理论研究的结果。在四只砖石钱包上进行了实验测试,这些砖块装有水平近表面安装(NSM)碳FRP条,并经过了水平弯曲。在垂直方向上测试样品,并改变垂直压缩载荷。施加压缩载荷改善了FRP的约束效率,从而增加了试样的最大强度。主要的失效模式是位移诱导(DI)剥离和FRP屈曲。建立了数学模型来预测试样的开裂弯矩和弯矩承载力。这些模型明确考虑了砂浆和砖单元的抗弯强度,床缝的抗扭强度,NSM FRP以及垂直压缩应力和摩擦力对床缝抗剪强度的影响。所提出的数学模型已针对实验测试的结果进行了验证。

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