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Assessing the structural behaviour of square hollow glass columns subjected to combined compressive and impact loads via full-scale experiments

机译:通过全面的实验评估承受压缩和冲击载荷的方形中空玻璃柱的结构性能

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摘要

Glass is largely used in buildings as a novel construction material. Due to the intrinsic mechanical properties of such material, however, specific design recommendations are demanded in order to offer appropriate "fail-safe" requirements. This is especially true in the case of load-bearing structural glass elements where redundancy, stability and residual resistance should be guaranteed. In this regard, based also on a past research effort, the paper experimentally investigates the structural performance of full-scale square hollow glass columns, whose resisting cross-section consists of four adhesively joined laminated glass panes. Impact tests are carried out on in-plane compressed specimens, including both a reference undamaged column and a deliberately, preliminary broken specimen. The effects of multiple impact test configurations (inclusive of various release configurations for the impact mass as well as type of impact body) are hence emphasized, with critical discussion of the observed overall results and failure mechanisms. (C) 2017 Elsevier Ltd. All rights reserved.
机译:玻璃在建筑物中大量用作新型建筑材料。但是,由于这种材料的固有机械性能,因此需要特定的设计建议,以提供适当的“故障安全”要求。对于承重结构玻璃元件尤其如此,在这种情况下应确保冗余,稳定性和残余电阻。在这方面,基于过去的研究成果,本文还通过实验研究了全尺寸方形中空玻璃柱的结构性能,该方形中空玻璃柱的抵抗横截面由四个粘合在一起的层压玻璃板组成。冲击试验是在平面压缩样品上进行的,包括参考未损坏的色谱柱和故意破坏的样品。因此,通过对观察到的总体结果和破坏机理的严格讨论,着重强调了多种冲击试验配置(包括冲击质量以及冲击体类型的各种释放配置)的影响。 (C)2017 Elsevier Ltd.保留所有权利。

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