Design of Shake Table Tests of Multi-Leaf Masonry Walls Before and After Retrofitting

S. Santis, O. AlShawa, G. Canio, S. Forliti, D. Liberatore, P. Meriggi, I. Roselli, L. Sorrentino, G. Felice
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Abstract

. A significant proportion of the built heritage in historic centres is constituted by rubble stone masonry structures. Collapses by leaf separation and disaggregation observed after earthquakes highlight their dramatic vulnerability, especially under out-of-plane loads. Nevertheless, their dynamic response still needs to be fully investigated and their capacity may be overestimated by assessment approaches based on rigid-body mechanics. Effective retrofitting solutions are also needed to protect human lives and safeguard the built heritage, while ensuring the conservation of its architectural value. This paper describes the design of a shake table investigation on stone masonry walls, whose materials and arrangement reproduce those surveyed in the villages of central Italy struck by the 2016-2017 earthquake sequence. The test setup was conceived to induce out-of-plane vertical bending under earthquake base motion and investigate the dynamic response of multi-leaf rubble stone masonry and the gain in seismic capacity that can be achieved with mortar-based composite reinforcements, designed to prevent the leaf separation and disaggregation of the wall without compromising its fair face.
多层砌体墙改造前后振动台试验设计
. 历史中心的建筑遗产中有很大一部分是由石料砌体结构构成的。地震后观察到的树叶分离和解体导致的倒塌突出了它们的巨大脆弱性,特别是在面外荷载作用下。然而,它们的动态响应仍需要充分研究,并且基于刚体力学的评估方法可能高估了它们的能力。有效的改造方案也需要保护人类生命和保护建筑遗产,同时确保其建筑价值得到保护。本文描述了对石砌体墙进行震动台调查的设计,其材料和布置再现了2016-2017年地震序列中意大利中部村庄的调查结果。该试验装置旨在在地震基础运动下诱导面外垂直弯曲,并研究多叶片碎石砌体的动力响应以及砂浆基复合增强可以实现的抗震能力增益,旨在防止叶片分离和墙体解体,同时不影响其美观面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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