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Thermal Properties of Polypropylene Composites Reinforced with Different Vegetable Fibers

机译:用不同植物纤维增强聚丙烯复合材料的热性能

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Components based on composites reinforced with vegetable fibers have awaked interest in various industrial fields. The thermal properties of fibers, matrix and composite define the temperature limits for application and processing of these materials. In this work, a thermal analyzer TGA was used to evaluate the degradation and thermal events of vegetable fibers (abaca, curaua, fique, sisal, cellulose and in natura fibers from sugarcane bagasse and straw), polypropylene (PP) and PP composites reinforced with 15 wt% fibers. Samples were studied by using 30 to 600°C at 5°C. Min~(-1) flow rate under helium or air atmosphere. TG curves from fibers showed weight loss in multiple stages. Before the thermal degradation peak, the abaca composite was more thermally stable, followed by fique, curaua and sisal composites. Thermal stability of composites was inferior for neat PP; however, it had a significant increase for the fiber.
机译:基于用植物纤维增强复合材料的组分对各种工业领域令人震惊的兴趣。纤维,基质和复合材料的热性能限定了这些材料的应用和加工的温度限制。在这项工作中,使用热分析仪TGA来评估植物纤维的降解和热事件(Abaca,Curaua,Fique,Sisal,纤维素和来自甘蔗蛋白饼干和秸秆的Natura纤维),加强的聚丙烯(PP)和PP复合材料15wt%纤维。通过在5℃下使用30至600℃来研究样品。最小〜(-1)氦气或空气气氛下的流速。来自纤维的Tg曲线在多个阶段中显示出体重减轻。在热降解峰之前,Abaca复合材料更热稳定,然后是Fique,Curaua和Sisal复合材料。纯PP的复合材料的热稳定性较差;然而,它对纤维具有显着增加。

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