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Role of Toothing on In-Plane and Out-of-Plane Behavior of Confined Masonry Walls

机译:齿在承重砌体墙面内和面外行为中的作用

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摘要

Load-carrying capacity of confined masonry walls in the out-of-plane direction after being damaged is crucial for overall stability and is affected by the type of interface present at the wall edge and column, such as toothing. Shake table tests were conducted to investigate the effectiveness of a toothed connection on the out-of-plane behavior of damaged confined masonry walls. Four half-scale clay brick masonry walls were subjected to a sequence of slow cyclic in-plane drifts and shake table-generated ground motions in the out-of-plane direction. Specimens included one regular RC infill frame and three confined masonry panels, two with different densities of toothing and one with no toothed connection. The specimen with the infill panel demonstrated a higher risk of out-of-plane collapse, whereas the other three confined masonry wall specimens maintained structural integrity and out-of-plane stability even when severely damaged. The confined masonry walls with or without toothing enhanced the interaction between masonry walls and RC confining elements and were able to delay the failure by controlling out-of-plane deflections even after an in-plane drift cycle of 1.75%.
机译:受限后,承压砌体墙在平面外方向上的承载能力对于整体稳定性至关重要,并且受墙体边缘和立柱处存在的界面类型(例如齿形)的影响。进行了振动台测试,以研究齿形连接对受损密闭砌体墙面外行为的有效性。四个半比例的粘土砖砌体墙经历了一系列缓慢的循环平面内位移,并在平面外方向上震动了工作台产生的地震动。标本包括一个常规的RC填充框架和三个密闭的砌体面板,其中两个具有不同的齿密度,一个没有齿连接。带有填充面板的标本显示出更高的面外塌陷风险,而其他三个受限的砌体墙标本即使受到严重破坏也能保持结构完整性和面外稳定性。带或不带齿的封闭式砌体墙增强了砌体墙与RC约束构件之间的相互作用,即使在平面内漂移周期为1.75%之后,也可以通过控制平面外挠度来延迟破坏。

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