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Experimental behavior of masonry wall-to-timber elements connections strengthened with injection anchors

机译:注入锚加固砌体墙木构件连接的实验行为

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摘要

Out-of-plane failure mechanisms observed in stone masonry buildings subjected to seismic action are often a direct result of poor connections between structural elements. During a seismic event these weak connections become incapable of assuring proper load transmission. Therefore, the need to prevent these phenomena is of critical importance in understanding the behavior of unstrengthened masonry buildings along with the necessity of developing effective strengthening solutions. This paper presents injection anchors as a viable option to improve anchorage between masonry and timber elements on historical buildings, as for example wall-to-timber framed wall or wall-to-timber diaphragm connections. The experimental campaign consisted of quasi-static monotonic and cyclic pullout tests performed on real scale specimens, representative of wall-to-timber framed wall connections found in late 19th century buildings of downtown Lisbon, Portugal. Combined cone-bond failure was obtained in all 7 tests. Boundary conditions of the specimens greatly affected the results in terms of maximum pullout force, dissipated energy, and strength degradation. Displacement ductility of the strengthened connections is high. The force-displacement curves clearly pointed out the influence on the results of the wall's compressive stress state and the contribution of friction in the grout/masonry interface.
机译:在遭受地震作用的砌石建筑中观察到的面外破坏机制通常是结构元件之间连接不良的直接结果。在地震事件中,这些弱连接无法确保适当的载荷传递。因此,预防这些现象的必要性对于理解未加强的砖石建筑的行为以及制定有效的加固解决方案的必要性至关重要。本文介绍了注入式锚钉,作为改善历史建筑中砖石和木材元素之间锚固的一种可行选择,例如墙到木框架墙或墙到木隔板连接。实验活动包括对真实规模的标本进行的准静态单调和循环拉拔测试,代表在葡萄牙里斯本市中心19世纪晚期建筑中发现的墙到木框架墙连接。在所有7个测试中均获得了组合的锥键破坏。样品的边界条件在最大拉力,耗散能量和强度降低方面极大地影响了结果。加强连接的位移延展性高。力-位移曲线清楚地指出了对墙体压缩应力状态结果的影响以及水泥浆/砌体界面中摩擦的贡献。

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