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Tests on two 18-years-old prestressed thin walled roof elements

机译:对两个18岁的预应力薄壁屋顶构件进行测试

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摘要

The paper presents the experimental tests carried out on two prestressed thin walled V-shaped elements, used over a period of 18 years as the roof of an industrial building and removed after having exhibited marked deflections and crack patterns. The experimental program, including material characterization, impact load and ultimate static load tests, is aimed at evaluating the actual load carrying capacity of the elements. The survey of the elements geometry, with special attention to imperfections, is presented; then results of the impact load test, namely the fundamental frequencies and modal shapes of free vibration, are reported. Successively, the results of static load tests up to failure are discussed. Due to the small thickness of the cross section walls, second order effects strongly interact with the global failure mechanism. The combination of dynamic impact and ultimate static load tests allowed the calibration of an accurate finite element model, accounting for both mechanical and geometrical nonlinearities, capable to predict the behaviour of the elements up to collapse and useful to design repairing and strengthening works.
机译:本文介绍了在两个预应力薄壁V形元件上进行的实验测试,这些元件在长达18年的时间里用作工业建筑物的屋顶,并在出现明显的挠度和裂缝图案后被移除。实验程序包括材料表征,冲击载荷和极限静载荷测试,旨在评估元件的实际承载能力。介绍了元素几何的调查,特别注意缺陷。然后报告冲击载荷测试的结果,即自由振动的基本频率和模态形状。继而,讨论了直至故障的静态载荷测试的结果。由于横截面壁的厚度较小,因此二阶效应与整体破坏机制强烈相互作用。动态冲击和极限静载荷测试相结合,可以校准精确的有限元模型,并考虑到机械和几何非线性,能够预测直至坍塌的元素的行为,对设计维修和加固工作很有用。

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