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Testing robustness: A full-scale experimental test on a two-storey reinforced concrete frame with solid slabs

机译:测试稳健性:具有固体板坯的两层钢筋混凝土框架的全尺寸实验试验

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This paper presents the results of a full-scale robustness test carried out on a two storey building with two square reinforced concrete slabs (25 cm deep) with a span of 6.6 m, in which a corner column was suddenly removed. Despite the extreme action, and the fact that the slab was not designed for it, only relatively minor damage was observed, with a maximum deflection around 22 cm and apparently controled cracking patterns. The slab started working as a simply supported element along the symmetry axis of the structure supported on only 3 columns. The tests was modeled using Finite Element Analysis. It was observed that the model could capture very well the behaviour of the real structure, predicting very similar cracking patterns and deflections. The structure was shored two hours after the test because deflections were not yet fully stabilized. It is suspected that this increase of deflections could be related to the deterioration by torsional effects of the connection between the slab and columns on the first floor.
机译:本文介绍了在两层建筑物上进行的全规模稳健性试验,其中两个方形钢筋混凝土板(25厘米深),跨度为6.6米,其中突然移除了角柱。尽管存在极端的行动,但是仅观察到平板的事实,只观察到相对较小的损坏,最大偏转约为22厘米,显然控制的裂缝模式。板坯开始作为仅在仅3列支持的结构的对称轴的简单支持的元素。使用有限元分析进行建模测试。观察到该模型可以捕获真实结构的行为,预测非常相似的开裂模式和偏转。测试后,该结构在测试后两小时,因为偏转尚未完全稳定。怀疑,这种偏转的增加可能与一层板坯和柱之间的连接的扭转效应的劣化有关。

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