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Fibre composite strengthening of thin-walled steel vehicle crush tubes for frontal collision energy absorption

机译:薄壁钢制车辆破碎管的纤维复合加固,吸收正面碰撞能量

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Thin-walled tubes made from metals or fibre-resin composites have been used widely as energy absorbers in structural crashworthiness applications. A relatively recent advent of composite energy absorbers are externally fibre-reinforced metal tubes, where fibres are bonded to the metal tube surface. Such composites take advantage of the favourable characteristics of each material, being the stable, ductile plastic collapse mechanism of the metal and the high strength to weight ratio of the fibre-resin composite. While several recent experimental and analytical studies have highlighted the substantial improvements in performance fibre strengthening provides, the potential use of such members as structural components in vehicles has yet to be explored. This paper presents a numerical study of the application of fibre strengthened steel tubes to the frontal crush tubes of two different passenger vehicles under frontal collisions. Substantial improvements in vehicle crash performance are demonstrated, as is the potential for vehicle light-weighting. Such components have the potential to contribute to improvements in fuel efficiency and emissions reductions in future passenger vehicle fleets.
机译:由金属或纤维树脂复合材料制成的薄壁管已广泛用作结构耐撞性应用中的能量吸收器。复合能量吸收器的相对较新的出现是外部纤维增强的金属管,其中纤维结合到金属管表面。这样的复合材料利用了每种材料的有利特性,即金属的稳定,易延展的塑性塌陷机理以及纤维-树脂复合材料的高强度重量比。尽管最近的一些实验和分析研究都强调了纤维增强性能的实质性改进,但尚未探讨将此类构件用作车辆结构部件的潜在用途。本文提出了纤维增强钢管在正面碰撞下在两种不同乘用车的正面破碎管中应用的数值研究。证明了车辆碰撞性能的显着改善,以及车辆轻量化的潜力。这些组件有可能有助于提高未来乘用车队的燃油效率和减少排放。

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