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A comparison of processing and performance for lignocellulosic reinforced polypropylene for injection moulding applications

机译:注塑成型用木质纤维素增强聚丙烯的加工和性能比较

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摘要

Using various reinforcements to tailor plastics properties to specific needs is a widespread approach in the plastics industry. Due to ecological considerations, natural reinforcements like wood particles or natural fibres have been investigated due to their reinforcing potential, but are usually not discussed in terms of processability. Therefore, the aim of this work is to compare a selected processing pathway for lignocellulosic reinforcements in terms of processability and composite properties. Composites were produced via compounding on a co-rotating twin screw extruder and injection moulding. Materials properties like tensile strength and modulus were assessed, as well as the processing specific properties were recorded. We found, that wood particles show a very good ratio between processability and properties, while sisal fibres outperform the other reinforcements in terms of mechanical properties due to their fibrous shape, but also using reinforcements like milled rice husks in composites can be feasible, especially when wood is not a locally available resource.
机译:在塑料工业中,使用各种增强材料使塑料性能适应特定需求是一种广泛的方法。出于生态方面的考虑,已经对诸如木材颗粒或天然纤维之类的天然增强材料进行了研究,因为它们具有增强的潜力,但通常不会就可加工性进行讨论。因此,这项工作的目的是在可加工性和复合性能方面比较木质纤维素增强材料的选定加工途径。复合材料是通过在同向旋转双螺杆挤出机上进行配混和注塑成型生产的。评估材料的性能,如拉伸强度和模量,并记录加工的特定性能。我们发现,木材颗粒在可加工性和特性之间显示出非常好的比率,而剑麻纤维由于其纤维形状而在机械性能方面优于其他增强材料,但是在复合材料中使用碾碎的稻壳等增强材料也是可行的,尤其是当木材不是本地可用资源。

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