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The Effects of Reprocessing and Fiber Treatments on the Properties of Polypropylene-Sugarcane Bagasse Biocomposites

机译:重新处理和纤维治疗对聚丙烯 - 甘蔗Bagasse生物复合材料性能的影响

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摘要

This study explores the reprocessing behavior of polypropylene-sugarcane bagasse biocomposites using neat and chemically treated bagasse fibers (20 wt.%). Biocomposites were reprocessed 5 times using the extrusion process followed by injection molding. The mechanical properties indicate that microfibers bagasse fibers addition and chemical treatments generate improvements in the mechanical properties, reaching the highest performance in the third cycle where the flexural modulus and flexural strength increase 57 and 12% in comparison with neat PP. differential scanning calorimetry (DSC) and TGA characterization show that bagasse fibers addition increases the crystallization temperature and thermal stability of the biocomposites 7 and 39 °C respectively, without disturbing the melting process of the PP phase for all extrusion cycles. The rheological test shows that viscosity values of PP and biocomposites decrease progressively with extrusion cycles; however, Cole–Cole plots, dynamic mechanical analysis (DMA), width at half maximum of tan delta peaks and SEM micrographs show that chemical treatments and reprocessing could improve fiber dispersion and fiber–matrix interaction. Based on these results, it can be concluded that recycling potential of polypropylene-sugarcane bagasse biocomposites is huge due to their mechanical, thermal and rheological performance resulting in advantages in terms of sustainability and life cycle impact of these materials.
机译:本研究探讨了使用整洁和化学处理的甘蔗纤维(20重量%)的聚丙烯 - 甘蔗Bagasse生物复合材料的再加工行为。使用挤出过程再处理生物复合材料5次,然后进行注塑。机械性能表明,微纤维甘蔗络纤维加成和化学处理产生机械性能的改善,达到第三个循环中的最高性能,其中弯曲模量和弯曲强度与整洁PP相比增加了57%和12%。差分扫描量热法(DSC)和TGA表征表明,甘蔗渣纤维分别增加了生物复合材料7和39℃的结晶温度和热稳定性,而不会扰乱所有挤出循环的PP相的熔化过程。流变试验表明,PP和生物复合材料的粘度值随挤出循环逐渐降低;然而,COLE-COLE图,动态机械分析(DMA),TAN DELTA峰和SEM显微照片的半部最大宽度表明,化学处理和再循环可以改善纤维分散和纤维 - 基质相互作用。基于这些结果,可以得出结论,由于其机械,热和流变性能,聚丙烯 - 甘蔗Bagasse生物复合材料的再循环电位是巨大的,导致这些材料的可持续性和生命周期的影响产生优势。

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