Seismic fragility of suspended ceiling systems used in NZ based on component tests

R. Dhakal, G. MacRae, A. Pourali, G. Paganotti
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引用次数: 23

Abstract

Current standards and guidelines for the design and installation of perimeter-fixed suspended ceilings are briefly reviewed and a summary of common damage in recent earthquakes is provided. Component failure fragility curves have been derived following experiments on typical NZ suspended ceilings, considering loading in tension, compression and shear. A simple method to analyse perimeter-fixed ceilings using peak floor acceleration (PFA) is described, allowing for ceiling system fragility to be obtained from component fragilities. This is illustrated in an example of a 5 storey building. It was found that single rivet end-fixings and cross-tee connections were the most critical elements of the ceilings governing the system capacity. In the design examples it was shown that ceilings at different elevations of the structure showed different probabilities of failure and larger ceiling areas with heavier tiles were most susceptible to damage.
基于构件试验的新西兰吊顶系统的地震易损性
简要审查了设计和安装周界固定吊顶的现行标准和准则,并概述了最近地震中常见的破坏情况。通过对典型新西兰吊顶进行试验,推导出考虑拉、压、剪荷载的构件破坏脆性曲线。描述了一种使用峰值地板加速度(PFA)分析周界固定天花板的简单方法,允许从组件脆弱性中获得天花板系统脆弱性。这在一个5层建筑的例子中得到了说明。结果发现,单铆钉端部固定和三通连接是控制系统容量的天花板的最关键因素。在设计实例中表明,结构的不同高度的天花板显示出不同的破坏概率,较大的天花板区域和较重的瓦片最容易受到破坏。
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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