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Increase in Seismic Resistance for a Full-Scale Dry Stack Masonry Arch Subjected to Hinge Control

机译:用于铰链控制的全尺寸干堆叠砌体拱起的地震抗性增加

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The seismic vulnerability and resulting damages to vaulted masonry is continuously observed with each new earthquake. There is a strong understanding of this seismic vulnerability and reinforcement strategies and techniques are continually advancing. Unfortunately, the application of reinforcement is typically applied in a way that the failure transforms directly from one of stability to strength. This direct transformation overlooks the potential behaviors of the system that exist between the two limits. To investigate and better understand the intermittent behavior between stability and strength of masonry arches, an in-scale dry joint masonry arch subjected to hinge control and a tilting plane loading condition was experimentally tested. The result of that experimentation revealed that the capacity can be increased and the failure defined, but the non-ideal conditions of slip and base deformations were observed as well. This work presents the second experimental campaign of a full-scale dry stack masonry arch subjected to hinge control and a tilting plane loading condition. In this campaign, the issue of slip is addressed in the arch construction, and the results show that the capacity of the full-scale arch can be increased and the failure defined.
机译:每次新地震都不断观察地震脆弱性和导致拱形砌体的损坏。对这种地震脆弱性和强化策略和技术进行了强烈的理解,不断推进。遗憾的是,钢筋的施加通常以故障直接从强度的稳定性转换的方式施加。这种直接转换概述了两个限制之间存在的系统的潜在行为。为了调查和更好地了解砖拱的稳定性和强度之间的间歇性行为,实验测试了铰接控制和倾斜平面负载条件的规模型干燥接头砌体拱门。该实验的结果显示,可以增加容量并且定义的失败,但也观察到滑动和基础变形的非理想条件。这项工作介绍了铰链控制的全尺寸干堆叠砌体拱的第二个实验活动和倾斜平面负载条件。在这一运动中,拱形结构中的SLIP问题得到解决,结果表明,可以提高全尺度拱的容量,并且定义失败。

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