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Injection Molded Self-Hybrid Composites Based on Polypropylene and Natural Fibers

机译:基于聚丙烯和天然纤维的注射成型自混合复合材料

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Self-hybrid thermoplastic composites (combination of two fiber sizes) were obtained by injection molding using pine or agave fibers with polypropylene (PP). The effect of self-hybridization was determined through mechanical properties and water absorption for different total fiber contents between 10 and 30% wt. The results showed that impact strength (30% of fiber) and tensile modulus (20% of fiber) were improved by self-hybridization compared with composites formulated with only one fiber size. Flexural properties were not improved by self-hybridization. On the other hand, the combination of two fiber sizes had no effect on the water absorption behavior of these composites. Overall, the total fiber content was found to be an important parameter with 20% being the optimum condition where self-hybridization provides the best mechanical properties.
机译:通过使用松树或龙舌兰纤维与聚丙烯(PP)进行注塑成型,获得自混合热塑性复合材料(两种纤维尺寸的组合)。通过机械性能和吸水率可确定10%至30%wt的不同总纤维含量的自杂化效果。结果表明,与仅用一种纤维尺寸配制的复合材料相比,通过自杂交提高了冲击强度(纤维的30%)和拉伸模量(纤维的20%)。弯曲性能没有通过自杂交得到改善。另一方面,两种纤维尺寸的组合对这些复合材料的吸水性能没有影响。总的来说,发现总纤维含量是一个重要的参数,其中20%是最佳的条件,在该条件下自混化可提供最佳的机械性能。

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