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Poliolefinas refor?§adas com fibras vegetais curtas: sisal ?? curau??

机译:用短植物纤维增强的聚烯烃:剑麻??库劳?

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There is growing interest in reinforced polymer composites using short vegetal fibers to replace glass fibers for several reasons. The composite fibers are produced from renewable resources, being biodegradable and less abrasive to the processing equipment, in addition to possessing a lower density than the glass fibers. Since their thermal degradation onset is at 200 ?°C, they can be used to reinforce thermoplastics processed below this temperature and thermosets. Several vegetal fibers have been used as reinforcing agent, including sisal and cuaru??. However, there is controversy in the literature about the composites final properties. In this work we compare the properties of composites of high density polyethylene or polypropylene with 20 wt. (%) of short sisal or curau?? fibers, with or without a coupling agent. All composites were processed by extrusion and molded by injection, under exactly the same conditions, and the mechanical properties were compared. The curau?? fibers presented a higher tensile resistance than the sisal fibers, and the composites with curau?? fibers had slightly higher tensile and flexural resistance compared to the sisal fiber composites. The situation is opposite in the impact resistance results, with sisal composites displaying higher impact resistance. Since sisal fibers are more fragile than curau?? fibers, during processing there is a higher fracture of sisal in comparison to curau??, inducing these differences in composites mechanical properties.
机译:由于多种原因,人们越来越关注使用短的植物纤维代替玻璃纤维的增强聚合物复合材料。除了具有比玻璃纤维低的密度之外,复合纤维由可再生资源生产,可生物降解并且对加工设备的磨料更少。由于它们的热降解起始温度为200°C,因此可用于增强在此温度和热固性温度以下加工的热塑性塑料。几种植物纤维已被用作增强剂,包括剑麻和cuaru ??。然而,关于复合材料最终性能的文献存在争议。在这项工作中,我们比较了20 wt。%的高密度聚乙烯或聚丙烯复合材料的性能。 (%)短剑麻或咖喱?纤维,有或没有偶联剂。所有复合材料均在完全相同的条件下通过挤出加工和注塑成型,并比较了机械性能。咖喱?纤维具有比剑麻纤维更高的抗拉强度,以及具有姜黄纤维的复合材料。与剑麻纤维复合材料相比,纤维具有更高的拉伸和弯曲阻力。耐冲击性结果则相反,剑麻复合材料显示出更高的耐冲击性。由于剑麻纤维比咖喱纤维更易碎?纤维在加工过程中,与curau相比,剑麻的断裂更高,从而导致了复合材料机械性能的这些差异。

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