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An experimental study on the influence of composite materials used to reinforce masonry ring beams

机译:复合材料对砌体环梁加固影响的试验研究

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摘要

For historic masonry constructions the out-of-plane wall behavior is critical to seismic performance. Because the main cause of out-of-plane collapses is the wall-to-wall level of connection, the application of a reinforced concrete (RC) ring beam at the eaves level of historic masonry buildings is an effective method to prevent an out-of-plane mechanism of a wall panel. However this effective reinforcing method presents some drawbacks. In order to address this, this paper describes the problems associated with this “traditional” reinforcing method and introduces a new retrofitting technique for historic masonry buildings by realizing a new type of ring beam made of recycled old stones or bricks reinforced at the bed joints with glass-fiber sheets, GFRP (Glass Fiber Reinforced Polymer) grids or/and PBO (polybenzoxazole: poly-p-phenylene benzobisoxazole) cords. An experimental investigation has been carried out on 10 full-scale rubble-stone or brickwork masonry ring beams. The testing included the use of composite materials inserted into the mortar joints during the fabrication phase of the beams and pinned end conditions (four-point bending configuration). Beams were reinforced with different composite layouts.
机译:对于历史悠久的砖石建筑,平面外墙的行为对于抗震性能至关重要。由于平面外坍塌的主要原因是墙对墙的连接,因此在历史悠久的砖石建筑的屋檐处使用钢筋混凝土(RC)环形梁是防止墙外塌陷的有效方法。墙面板的平面机构。但是,这种有效的加固方法存在一些缺点。为了解决这个问题,本文描述了与这种“传统”加固方法相关的问题,并介绍了一种新型的翻新技术,用于实现历史悠久的砖石建筑,方法是实现一种新型的环形梁,这种环形梁由再生的旧石头或砖砌成,并在床缝处加筋。玻璃纤维板,GFRP(玻璃纤维增​​强聚合物)网格或/和PBO(聚苯并恶唑:聚对苯撑苯并二恶唑)线。已经对10个全尺寸的碎石或砖砌砌体环形梁进行了实验研究。测试包括在梁的制造阶段和固定端部条件(四点弯曲配置)期间使用插入砂浆缝中的复合材料。梁用不同的复合布局进行了加固。

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