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Falling Weight Impact Damage Characterisation of Flax and Flax Basalt Vinyl Ester Hybrid Composites

机译:亚麻和亚麻玄武岩乙烯基酯杂化复合材料的坠落冲击损伤表征

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摘要

Understanding the damage mechanisms of composite materials requires detailed mapping of the failure behaviour using reliable techniques. This research focuses on an evaluation of the low-velocity falling weight impact damage behaviour of flax-basalt/vinyl ester (VE) hybrid composites. Incident impact energies under three different energy levels (50, 60, and 70 Joules) were employed to cause complete perforation in order to characterise different impact damage parameters, such as energy absorption characteristics, and damage modes and mechanisms. In addition, the water absorption behaviour of flax and flax basalt hybrid composites and its effects on the impact damage performance were also investigated. All the samples subjected to different incident energies were characterised using non-destructive techniques, such as scanning electron microscopy (SEM) and X-ray computed micro-tomography (πCT), to assess the damage mechanisms of studied flax/VE and flax/basalt/VE hybrid composites. The experimental results showed that the basalt hybrid system had a high impact energy and peak load compared to the flax/VE composite without hybridisation, indicating that a hybrid approach is a promising strategy for enhancing the toughness properties of natural fibre composites. The πCT and SEM images revealed that the failure modes observed for flax and flax basalt hybrid composites were a combination of matrix cracking, delamination, fibre breakage, and fibre pull out.
机译:了解复合材料的损坏机理需要使用可靠的技术详细描述失效行为。这项研究的重点是评估亚麻-玄武岩/乙烯基酯(VE)杂化复合材料的低速降重冲击损伤行为。为了表征不同的冲击损伤参数(例如能量吸收特性,损伤模式和机理),使用了三种不同能级(50、60和70焦耳)下的入射冲击能来完成穿孔。此外,还研究了亚麻和亚麻玄武岩杂化复合材料的吸水性能及其对冲击破坏性能的影响。使用非破坏性技术(例如扫描电子显微镜(SEM)和X射线计算机显微断层扫描(πCT))对所有经受不同入射能量的样品进行表征,以评估研究的亚麻/ VE和亚麻/玄武岩的破坏机理/ VE混合复合材料。实验结果表明,与没有杂化的亚麻/ VE复合材料相比,玄武岩杂化系统具有较高的冲击能量和峰值负荷,这表明杂化方法是增强天然纤维复合材料韧性的一种有前途的策略。 πCT和SEM图像显示,亚麻和亚麻玄武岩杂化复合材料观察到的破坏模式是基体开裂,分层,纤维断裂和纤维拉出的组合。

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