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首页> 外文期刊>Journal of Materials Science >Impact of natural variability of flax fibres properties on mechanical behaviour of short-flax-fibre-reinforced polypropylene
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Impact of natural variability of flax fibres properties on mechanical behaviour of short-flax-fibre-reinforced polypropylene

机译:亚麻纤维性质的自然变异性对短亚麻纤维增强聚丙烯力学性能的影响

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摘要

Short-flax-fibre-composite materials are appealing for technical applications thanks to renewability, biodegradability but also potentially high ratio rigidity/density of flax fibres, in particular. However, the significant variability of technical flax fibres' constitutive, geometrical and mechanical properties and especially lack of quantitative knowledge about its real impact on composite behaviour still prevent a widespread use of such composites. To overcome this obstacle, this study gives qualitative and quantitative information about impact of variability of flax fibre properties on numerically assessed tensile behaviour of short-flax-fibre-reinforced polypropylene, with particular attention paid to the determination of lower bound of composite behaviour. Different fibre contents and orientations, including in-plane random and distributed orientations, are considered. Results reveal that range of variation of composite behaviour strongly depends on weight of fibre contribution to composite response. It is therefore directly related to fibre content and orientation but also indirectly to manufacturing process, since this latter governs fibre orientation.
机译:短亚麻纤维复合材料由于具有可更新性,生物降解性,特别是亚麻纤维潜在的高比率刚度/密度,因此吸引了技术应用。然而,技术亚麻纤维的组成,几何和机械性能的显着变化,尤其是缺乏关于其对复合材料性能的实际影响的定量知识,仍然阻碍了这种复合材料的广泛使用。为了克服这一障碍,本研究提供了有关亚麻纤维性能变化对短亚麻纤维增强聚丙烯数值评估拉伸性能影响的定性和定量信息,尤其要注意确定复合行为的下限。考虑了不同的纤维含量和取向,包括平面内随机取向和分布取向。结果表明,复合材料行为的变化范围在很大程度上取决于纤维对复合材料响应的贡献重量。因此,它与纤维含量和取向直接相关,但与制造过程也间接相关,因为后者决定了纤维的取向。

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