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Effect of multi stitched locations on high speed crushing of composite tubular structures

机译:多针位置对复合管状结构高速破碎的影响

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摘要

The present paper experimentally investigates progressive energy absorption of fibre-reinforced polymer (FRP) composite tubular structures under high speed loading conditions. Various multi stitched locations are studied to find a correlation between single and multi-locations of stitches and energy absorption capabilities of composite absorbers. The through-thickness reinforcements are applied into locations of 10 mm, 20 mm, 30 mm, 10-20 m, 10-30 mm, 20-30 mm, 10-20-30 mm and 10-15-20-25-30-35 mm from top of the tubes. It is shown that multi-stitched location can cause several increase of crushing load and consequently increase of energy absorption of composite tube absorbers. The idea would be expanded to other designs which are followed by increase of stitched locations and reduction of the distance between stitches to improve the mean force with a smooth and progressive pattern of crushing load. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文通过实验研究了纤维增强聚合物(FRP)复合管状结构在高速载荷条件下的渐进能量吸收。研究了多个缝合位置,以发现缝合的单个位置和多个位置与复合吸收体的能量吸收能力之间的相关性。厚度增厚的钢筋被施加到10mm,20mm,30mm,10-20m,10-30mm,20-30mm,10-20-30mm和10-15-20-25-30的位置距试管顶部-35毫米。结果表明,多缝位置会导致破碎载荷的增加,从而增加复合管式吸收器的能量吸收。该想法将扩展到其他设计,随后增加缝合位置并减小针迹之间的距离,以通过平滑且渐进的压碎模式提高平均力。 (C)2016 Elsevier Ltd.保留所有权利。

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