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Microfoaming of flax and wood fibre reinforced polypropylene composites

机译:亚麻和木纤维增强聚丙烯复合材料的微发泡

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Natural and wood fibre reinforced plastics as a relatively new group of environmental friendly materials have been extensively applied in interior, building applications and in the automobile industry. Among others, natural and wood fibre reinforced foamed polymer materials are of high significance because of the possibility of their reducing the density of automotive components which have a cellular structure. However, the properties of these materials have not been fully investigated and described. Microcellular composites of polypropylene containing natural and wood fibre was prepared using an injection moulding process. In the present work, the manufacturing technology of natural and wood fibre reinforced polymer microfoams was developed and the influence of fibre and microvoid content on its property spectrum was systematically investigated. The forming of microvoids and the degree of foaming related to the variation of the processing parameters in connection with manufacture technology was characterised. Measurement of density, cell size, tensile and flexural properties of the prepared composites was carried out. The cell structure is dependent on flow direction of foaming. The density of microfoamed wood fibre-PP composites was reduced by about 24% and decreased by as much as 0.77 g/cm(3). Light microscopy showed that the cells are circular and it was also observed that the maximum cell sizes are between 10-50 mu m. Water absorption and scanning electron microscopy of the composites were also investigated. Considering the experimental results, it can be deduced that the microcellular composites exhibit a possible combination of relatively good engineering properties and lower density for different technical applications.
机译:天然和木纤维增强塑料作为一种相对较新的环保材料,已广泛应用于室内,建筑和汽车行业。其中,天然和木纤维增强的泡沫聚合物材料具有很高的意义,因为它们可能降低具有孔结构的汽车部件的密度。但是,这些材料的性能尚未得到充分研究和描述。含有天然纤维和木纤维的聚丙烯的微孔复合材料是采用注塑工艺制备的。在目前的工作中,开发了天然和木纤维增强聚合物微泡的制造技术,并系统地研究了纤维和微孔含量对其性能谱的影响。表征了微孔的形成和发泡程度,其与制造技术相关的加工参数的变化有关。对所制备的复合材料的密度,泡孔尺寸,拉伸和挠曲性能进行了测量。泡孔结构取决于泡沫的流动方向。微泡木纤维-PP复合材料的密度降低了约24%,降低了多达0.77 g / cm(3)。光学显微镜显示细胞是圆形的,并且还观察到最大细胞大小在10-50μm之间。还研究了复合材料的吸水率和扫描电子显微镜。考虑到实验结果,可以推断出微孔复合材料表现出相对良好的工程性能和较低密度的可能组合,以用于不同的技术应用。

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