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Experimental investigation of pre-damaged thin-walled channel section column subjected to compression

机译:预损伤薄壁槽型柱受压试验研究

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摘要

Experimental investigations of channel-section profiles subjected to compression after low-velocity impacts (20 J) leading to global failure are presented. The columns under discussion were made of an eight-layer GFRP laminate with quasi-isotropic, quasi-orthotropic and angle ply arrangements of layers. The profiles were impacted in mid-width of the web or mid-width of the flange in various locations along the profile length. An influence of the impact position and the layer arrangement on buckling and failure phenomena, post-buckling behaviour for impacted and non-impacted columns was thoroughly examined and described. It was found that the local degradation introduced by low-velocity impacts did not affect the global behaviour of the analysed structures to a considerable extent. Moreover, it was noted that the failure mechanism was initiated in the impact location in none of the cases analysed. Additionally, it was stated that a number of fracture points did not have any significant impact on the capacity reduction.
机译:提出了在导致整体破坏的低速冲击(20 J)后受到压缩的通道截面轮廓的实验研究。讨论中的柱子是由八层GFRP层压板制成,各层具有准各向同性,准正交异性和角度层排列。在沿轮廓长度的各个位置,轮廓受到腹板的中间宽度或法兰的中间宽度的影响。彻底检查并描述了撞击位置和层的布置对受压柱和未受压柱的屈曲和破坏现象以及屈曲后行为的影响。发现低速冲击引起的局部退化不会在很大程度上影响所分析结构的整体性能。此外,应注意的是,在未分析的任何案例中,故障机制都是在冲击位置启动的。另外,据指出,许多断裂点对容量降低没有任何重大影响。

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