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Characterization of polypropylene composites reinforced with flax fibers treated by mechanical and alkali methods : Science and Engineering of Composite Materials

机译:机械和碱处理的亚麻纤维增强聚丙烯复合材料的表征:复合材料科学与工程

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Flax is a type of natural fiber widely used as reinforcing materials for polymer composites. The commercially available flax fibers in Canada consist of a significant amount of shive and other impurities, which could act as stress concentration regions to negatively affect the mechanical property of composites. In this study, the shive was manually removed from the commercial flax fibers by screening and combing to obtain different shive contents from 0 to 30?wt%. By contrast, the obtained flax fibers were further treated with alkaline solution. The fibers obtained from mechanical and alkali treatment were compared on their thermal and mechanical properties. As expected, it was found that the thermal stability and mechanical properties of the flax reinforced polypropylene composites increased significantly with the removal of the shive content. However, the alkali treatment on flax fiber did not further improve the composites properties. The possible reason was that the proper mechanical treatment (screening and combing) prior to alkaline treatment effectively loosened the fiber bundles for better single fiber separation in matrix and significantly removed the impurities, thus the effect of alkaline treatment did not become obvious.
机译:亚麻是一种天然纤维,广泛用作聚合物复合材料的增强材料。加拿大的市售亚麻纤维由大量的碎屑和其他杂质组成,这些杂质可能充当应力集中区域,对复合材料的机械性能产生负面影响。在这项研究中,通过筛分和梳理从商业亚麻纤维中手动除去了碎屑,从而获得了0至30%wt%的不同碎屑含量。相反,将获得的亚麻纤维用碱性溶液进一步处理。比较了通过机械和碱处理获得的纤维的热和机械性能。如预期的那样,发现亚麻增强的聚丙烯复合材料的热稳定性和机械性能随切屑含量的去除而显着提高。但是,对亚麻纤维进行碱处理并不能进一步改善复合材料的性能。可能的原因是在碱处理之前进行适当的机械处理(筛分和梳理)可以有效地松散纤维束,从而更好地分离基质中的单纤维,并显着去除杂质,因此碱处理的效果并不明显。

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