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Evaluation of seismic dynamic behaviour of drywall partitions, facades and ceilings through shake table testing

机译:通过振动台测试评估干墙隔断,立面和天花板的地震动力行为

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Significant damage to architectural non-structural components caused by recent seismic events highlighted their importance in the building design and showed that their damage or collapse might have severe consequences. Therefore, the study of the seismic behaviour of non-structural components is very important to minimize the risk. In this context, a specific research project aimed to improve and expand the knowledge of seismic response of architectural non-structural lightweight steel drywall components started at the University of Naples "Federico II". This paper presents the results of dynamic shake table tests performed on prototypes made of indoor partition walls, outdoor facade walls and suspended continuous ceilings. The influence on seismic response of prototypes from basic and enhanced anti-seismic solutions, corresponding to the use of fixed or sliding connections at the walls and ceilings perimeter, was investigated. The seismic performance in terms of damage occurrence was also evaluated by fragility curves, which showed a better seismic response of enhanced solutions than basic solutions and a seismic "fragility" of indoor partition walls higher than that of outdoor facade walls. Finally, a repair cost estimation was performed by highlighting that the repair cost of partitions is higher than that of facades.
机译:最近发生的地震事件对建筑非结构性组件造成的重大损坏凸显了它们在建筑设计中的重要性,并表明它们的损坏或坍塌可能会带来严重的后果。因此,研究非结构构件的抗震性能对于最大程度地降低风险非常重要。在这种情况下,那不勒斯大学“费德里科二世”开始了一个具体的研究项目,目的是改善和扩展对建筑非结构轻质钢干墙构件的地震响应的认识。本文介绍了对由室内隔断墙,室外立面墙和悬浮式连续天花板制成的原型进行的动态振动台测试的结果。研究了基本抗震解决方案和增强抗震解决方案对原型地震响应的影响,该解决方案对应于在墙壁和天花板外围使用固定或滑动连接。还通过脆性曲线评估了在破坏发生方面的抗震性能,该脆性曲线显示出增强解决方案比基本解决方案具有更好的地震响应,室内隔墙的地震“易碎性”高于室外外墙。最后,通过强调隔板的维修成本高于立面的维修成本来进行维修成本估算。

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