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In-plane shear cyclic behavior of windowed masonry walls reinforced with textile reinforced mortars

机译:用纺织增强砂浆加固窗口砌体墙体的面内剪切循环行为

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The current experimental study is focused on the mechanical performance of masonry walls under in-plane cyclic shear forces. All specimens were fabricated with a central window, in which the geometry considered the recommendations of the Spanish structural seismic design code. Windows represent a weak area in the masonry structure, in which there are stress concentrations responsible for crack initiation. In order to improve the mechanical strength and ductility, a reinforcement with a Textile Reinforced Mortar (TRM) was used on both sides of the wall. The performance of the unreinforced and reinforced masonry has been discussed in terms of strength and ductility gain, stiffness degradation and energy dissipation capacity. The experimental tests comprised an initial vertical preload, and shear cycles with increasing amplitude. All tests were monitored by means of traditional displacement transducers, and digital image correlation. The analysis of the images showed the time evolution of the overall crack distribution. The TRM effect could be observed as an increase of the mechanical strength (maximum shear from 120 kN to more than 300 kN), higher displacements (drift from 9 to 35 mm), and more energy dissipation (the cumulative energy loss from 2.7 to 12.7 kN.m). In addition, the TRM reinforcements were capable of controlling the crack initiation and growth. The widespread crack along mortar joints observed in the unreinforced masonry became localized cracks (from the window's corners mainly), in which crack growth direction was not determined by masonry joints.
机译:目前的实验研究专注于平面内循环剪切力下砌体壁的机械性能。所有标本都是用中心窗口制造的,其中几何形状认为是西班牙结构地震设计代码的建议。窗户代表砌体结构中的弱区域,其中存在应力浓度,负责裂纹启动。为了提高机械强度和延展性,在墙壁的两侧使用具有纺织加强砂浆(TRM)的加强件。在强度和延展性增益,刚度降解和能量耗散能力方面已经讨论了未原始和加强砌体的性能。实验测试包括初始垂直预载荷,并具有幅度增加的剪切循环。通过传统的位移传感器和数字图像相关性监测所有测试。图像的分析显示了整体裂缝分布的时间演变。可以观察到TRM效应作为机械强度的增加(从120Kn到300 kN的最大剪切),较高的位移(从9至35毫米漂移),更高的能量耗散(累计能量损失为2.7到12.7 KN.M)。此外,TRM增强物能够控制裂纹引发和生长。在未原始的砌体中观察到的砂浆关节的广泛裂缝成为局部裂缝(主要来自窗口角),其中裂缝增长方向不是由砌体关节确定的。

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