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Variability of flax fibre morphology and mechanical properties in injection moulded short straw flax fibre-reinforced PP composites

机译:亚麻纤维形态的可变性和注塑式短秸秆氟X纤维增强PP复合材料的机械性能

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摘要

The influence of compounding and injection moulding on the initial variability and morphology of short straw flax fibres is determined and the mechanical properties for the injection moulded fibre reinforced composites are measured. It is found that the composition of the straw flax, flax fibre bundles and woody parts, together with the cutting process strongly affects the initial fibre morphology and its variability. In the initial fibres, small particles as well as long fibres with large width were found. A filter was used to reject the fibres with an aspect ratio below 15 before calculating statistics because these fibres have a negligible contribution to the composite reinforcement. After processing, the initial fibre length and width decrease strongly (-38% to -66% for length and -22% to -72% for width). Also, the variability is affected resulting in a standard deviation shifted towards lower fibre lengths and widths (-55% for length and -71% for width). The improvement of mechanical properties of the flax compound compared to the pure matrix material for the injection-moulded samples is found to be similar to the results for compounds with further processed flax fibres such as scutched and hackled fibres. An increase of tensile strength by 20% was found, for stiffness the increase is in the order of 50-70%. This indicates that despite the very large variability of the initial straw flax fibres and the strong changes of the variability in each processing step, a compound is obtained with improved mechanical properties.
机译:测定复合和注射成型对短秸秆纤维纤维的初始变异性和形态的影响,并测量注射模塑纤维复合材料的机械性能。结果发现,秸秆亚麻,亚麻纤维束和木质部件的组成与切割过程强烈影响初始纤维形态及其变异性。在初始纤维中,发现小颗粒以及具有大宽度的长纤维。在计算统计之前,使用过滤器在15以下15以下纵横比具有宽高比的纤维,因为这些纤维对复合钢筋具有可忽略不计的贡献。处理后,初始纤维长度和宽度强烈降低(-38%至-66%,宽度为-22%至-72%)。此外,可变性受到影响,导致标准偏差朝向更低的纤维长度和宽度(长度-55%而宽度为-71%)。发现与注塑样品的纯基质材料相比的亚麻化合物的力学性能的改善类似于具有进一步加工的亚麻纤维的化合物,例如脱落的纤维的化合物。发现拉伸强度的增加20%,对于刚度,增加量为50-70%。这表明,尽管初始秸秆亚麻纤维的可变性具有非常大的可变性和每个加工步骤中的可变性的强烈变化,但是通过改善的机械性能获得化合物。

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