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Bioinspired self-healing of advanced composite structures using hollow glass fibres

机译:中空玻璃纤维的生物启发式先进复合结构自我修复

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摘要

Self-healing is receiving an increasing amount of worldwide interest as a method to autonomously address damage in materials.The incorporation of a self-healing capability within fibre-reinforced polymers has been investigated by a number of workers previously.The use of functional repair components stored inside hollow glass fibres(HGF)is one such bioinspired approach being considered.This paper considers the placement of self-healing HGF plies within both glass fibre/epoxy and carbon fibre/epoxy laminates to mitigate damage occurrence and restore mechanical strength.The study investigates the effect of embedded HGF on the host laminates mechanical properties and also the healing efficiency of the laminates after they were subjected to quasi-static impact damage.The results of flexural testing have shown that a significant fraction of flexural strength can be restored by the self-repairing effect of a healing resin stored within hollow fibres.
机译:自愈作为一种自动解决材料损坏的方法,在全球范围内受到越来越多的关注。以前,许多工作人员已经研究了将自愈能力纳入纤维增强聚合物中的功能修复组件的使用。储存在空心玻璃纤维(HGF)中的方法就是一种受生物启发的方法。本文考虑将自修复HGF层放置在玻璃纤维/环氧树脂和碳纤维/环氧树脂层压板中,以减轻损坏的发生并恢复机械强度。研究了嵌入的HGF对层压板主体力学性能的影响以及层压板遭受准静态冲击损伤后的愈合效率。弯曲试验的结果表明,通过重整,可以恢复很大一部分的弯曲强度。储存在空心纤维中的愈合树脂的自我修复作用。

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