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Influence of Water Absorption on the Low Velocity Falling Weight Impact Damage Behaviour of Flax/Glass Reinforced Vinyl Ester Hybrid Composites

机译:吸水率对亚麻/玻璃纤维增​​强乙烯基酯杂化复合材料低速降重冲击损伤行为的影响

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摘要

Due to rigorous new environmental legislations, automotive, marine, aerospace, and construction sectors have redirected their focus into using more recyclable, sustainable, and environmentally friendly lightweight materials driven by strengthening resource efficiency drive. In this study, the influence of moisture absorption on flax and flax/glass hybrid laminates is presented with the aim to investigating their low velocity impact behaviour. Three different types of composite laminates namely, flax fibre reinforced vinyl ester, flax fibre hybridised glass fibre and glass fibre reinforced vinyl ester composites were fabricated using resin infusion technique. The moisture immersion tests were undertaken by immersing the different specimens in sea water bath at room temperature and 70 °C at different time durations. The low velocity falling weight impact testing was performed at 25 Joules of incident energy level and impact damage behaviour was evaluated at both ageing conditions using scanning electron microscopy (SEM) and X-ray microcomputed tomography (micro CT). The percentage of moisture uptake was decreased for flax vinyl ester specimens with glass fibre hybridisation. The maximum percentage of weight gain for flax fibre, flax/glass hybrid and glass fibre reinforced composites immersed at room temperature for 696 h is recorded at 3.97%, 1.93%, and 0.431%, respectively. The hybrid composite exhibited higher load and energy when compared flax/vinyl ester composite without hybridisation, indicating the hybrid system as a valid strategy towards achieving improved structural performance of natural fibre composites. The moisture absorption behaviour of these composites at room was observed to follow Fickian behaviour.
机译:由于严格的新环境法规,汽车,船舶,航空航天和建筑行业已将重点转移到使用更多可回收,可持续和环保的轻质材料上,这些材料都是通过加强资源效率驱动来推动的。在这项研究中,吸湿对亚麻和亚麻/玻璃杂化层压板的影响被提出,目的是研究它们的低速冲击性能。利用树脂灌注技术制备了三种不同类型的复合层压板,即亚麻纤维增强乙烯基酯,亚麻纤维杂化玻璃纤维和玻璃纤维增​​强乙烯基酯复合材料。湿气浸没测试是通过将不同的标本浸入室温和70°C的海水浴中不同时间进行的。低速坠落冲击试验是在25焦耳的入射能量水平下进行的,并且在两个老化条件下使用扫描电子显微镜(SEM)和X射线计算机断层扫描(micro CT)对冲击损伤行为进行了评估。玻璃纤维杂交的亚麻乙烯基酯样品的水分吸收百分比降低了。亚麻纤维,亚麻/玻璃混合纤维和玻璃纤维增​​强复合材料在室温下浸泡696小时的最大增重百分比分别为3.97%,1.93%和0.431%。当与不进行杂交的亚麻/乙烯基酯复合材料相比时,杂化复合材料显示出更高的负荷和能量,这表明杂化系统是实现天然纤维复合材料改善结构性能的有效策略。观察到这些复合材料在室内的吸湿行为遵循Fickian行为。

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