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SHEAR STRENGTHENING OF MASONRY PANELS USING A GFRP-REINFORCED MORTAR COATING

机译:使用GFRP加筋砂浆涂层剪切砌体板

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The use of new composite materials for reinforcement of heritage masonry structures, especially in seismic prone areas, is of interest structural engineers and conservators. However, the need to increase the structural performance of masonry structures is often in contrast with the principles of conservation in terms of reversibility, limited visual impact, compatibility of new materials with masonry. With the aim at striking a balance between structural safety and heritage protection, this paper investigates strengthening stone and brickwork masonry walls using glass-fiber reinforced polymer (GFRP) meshes embedded into a coating of lime or cement mortar. An experimental research program was undertaken in the laboratory on large-scale wall panels. Both clay brick and stone work specimens were tested, with and without strengthening. Single-sided and double-sided strengthenings were considered, as it is often not practicable to apply the reinforcement to both sides of a wall. Static tests were carried out on twelve masonry panels, under in-plane diagonal shear loading. The mechanisms by which load was carried were observed, varying from the initial, uncracked state, to the final, fully cracked state. The results demonstrate that a significant increase of the in-plane shear capacity of masonry can be achieved by using the proposed retrofitting technique. The experimental data were used to assess the effectiveness of the strengthening, and a finite element (FE) numerical model is discussed and calibrated against experimental results. The FE model was used to investigate further aspects of the reinforced masonry under shear-loading.
机译:采用新型复合材料加强遗产砌体结构,特别是在地震易发地区,是兴趣的结构工程师和保守派。然而,需要提高砌体结构的结构性性能,与可逆性,视觉冲击有限,有限的视觉冲击,新材料与砌体的兼容性的保护性能往往是相反的。旨在突击结构安全和遗产保护之间的平衡,研究了使用玻璃纤维增​​强聚合物(GFRP)网格的加强石和砖砌砌体墙体,嵌入嵌入石灰或水泥砂浆涂层。在大型墙板上的实验室进行了一个实验研究计划。粘土砖和石头工作标本都进行了测试,有和不加强。考虑单面和双面加强,因为将加强件施加到墙壁的两侧通常不可行。在平面内对角线剪切载荷下,在12个砌体板上进行静态测试。观察到载荷的机制,从初始,未包装状态变化到最终完全破裂的状态。结果表明,通过使用所提出的改装技术,可以实现砌体的面内剪切容量的显着增加。实验数据用于评估强化的有效性,并讨论有限元(Fe)数值模型和校准实验结果。 Fe模型用于探讨剪切载荷下增强砌体的进一步方面。

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