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In-plane shear strengthening of brick masonry panel with geogrid reinforcement embedded in bed and bed-head joints mortar

机译:砖砌面板与床上床头接头砂浆砌成土工格栅钢板的平面剪切强化

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摘要

An experimental investigation was carried out to study the strengthening performance of brick masonry prisms and panels via geogrid reinforcement embedded in brick mortar. A compressive strength test was performed for brick prisms, while a diagonal compression test was performed for brick panel with two patterns, i.e., geogrid reinforcement at bed joints as well as at bed-head joints. The compressive strength of the geogrid embedded prisms was found to be 32.65% more than that of un-reinforced brick prisms. While, geogrid-reinforced brick panels exhibited better crushing load, in-plane shear strength, lateral strength, ductility, etc., than un-reinforced masonry with the highest in-case of bed joint reinforcement. Cost analysis showed that the unit costs of un-reinforced and reinforced walls are similar (within 6.5%). Thus strengthened walls can be valid alternative to un-strengthened walls for new constructions and a low-cost strengthening technique for earthquake disaster mitigation of brick masonry buildings.
机译:进行了实验研究,研究了通过砖砂浆嵌入地地质格栅加固的砖砌棱镜和面板的加强性能。对砖棱镜进行压缩强度试验,而对砖块进行对角压缩试验,具有两种图案,即在床关节以及床头接头处的地质格栅加固。发现地质格栅嵌入式棱镜的抗压强度比未加固砖棱镜的抗压强度为32.65%。虽然地理钢筋砖面板具有更高的破碎负荷,面内剪切强度,延展强度,延展性等,而不是未加固的砌体,具有最高的床联合加固的情况。成本分析表明,未加固和增强墙的单位成本相似(6.5%以内)。因此,增强的墙壁可以是针对新建筑的未加强墙壁的有效替代方案,以及砖砌砌体建筑地震灾害减灾的低成本强化技术。

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