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Experimental study of CFRP strengthened steel columns subject to lateral impact loads

机译:CFRP加固钢柱承受侧向冲击载荷的试验研究。

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In both building and civil engineering structures, the occurrence of impact loading to column elements can be a significant issue, particularly in regard to disproportionate collapse. For existing structures vulnerable to impacts, the development of appropriate strengthening techniques is key to extending service life and improving robustness. In the case of structural steelwork, composites such as carbon fibre reinforced polymer (CFRP) offer a promising means of retrofitting and improving performance under impact. Towards this, the present study experimentally investigated a total of 12 square hollow section (SHS) columns under impact loads. The test series included both unstrengthened and CFRP strengthened samples with different fibre orientations with a view to finding the optimum CFRP configuration. As a means of simulating lateral impact on axially loaded elements, a purpose-built test rig was manufactured to apply a compressive preload to the samples prior to impact. Different preloading levels were applied to the samples before they were impacted transversely. The results show that the strengthening effectiveness increased with higher preloading level. The average reduction in the transverse displacement for the strengthened columns tested under 70% preloading level was around 32% compared to the unstrengthened column while this value was about 22% for the columns tested without compressive preload.
机译:在建筑和土木工程结构中,对柱单元的冲击荷载的发生都是一个重大问题,尤其是在不成比例的倒塌方面。对于易受冲击的现有结构,开发适当的加固技术对于延长使用寿命和提高坚固性至关重要。在结构钢结构的情况下,复合材料(例如碳纤维增强聚合物(CFRP))提供了一种有希望的方法,可以进行改进并改善冲击性能。为此,本研究实验性地研究了在冲击载荷下总共12个方形空心截面(SHS)柱。测试系列包括未增强和CFRP增强的样品,它们具有不同的纤维取向,以寻找最佳的CFRP配置。作为模拟对轴向加载的元件产生横向冲击的一种方法,制造了一种专用的测试设备,可以在冲击之前对样品施加压缩预紧力。在样品受到横向冲击之前,对其施加了不同的预加载水平。结果表明,随着预压水平的增加,加固效果逐渐增强。与未加强柱相比,在70%预载水平下测试的加强柱的横向位移平均减少量约为32%,而在没有压缩预载的情况下,此值约为22%。

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