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Broom fibers as reinforcing materials for polypropylene-based composites

机译:扫帚纤维作为聚丙烯基复合材料的增强材料

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Broom fibers have been used as reinforcement for the conventional polypropylene (iPP) and a maleate modified one (iPPMA). A conventional alkaline treatment and a steam explosion extraction process were applied to obtain the cellulosic material from broom branches. Composites were prepared by melt mixing materials with different weight percentages of broom fibers. Also ternary blends (iPPMA/iPP/broom fibers 5/45/50 wt) were obtained to examine the possibility of utilizing the maleate polypropylene as a compatibilizing agent. The fibers and the composites were thermally, morphologically, and mechanically characterized. Water absorption tests, to examine the behavior of these materials in wet conditions, were also performed. Particular attention was addressed to the study of the fiber/matrix interfacial adhesion. The results showed that the iPPMA-based composites, reinforced with alkaline extracted broom fibers, present specific mechanical properties competitive with those of the homologous polypropylene-based materials reinforced with short glass fibers. The ternary blends gave similar properties to those of the corresponding whole iPPMA-based composites. It is considered that the esteric linkage between the cellulose -OH, and the maleic anhydride groups grafted on the polypropylene backbone is greatly responsible for the similarity in the properties. In spite of better adhesion observed in the samples reinforced by the steam-exploded fibers, less improvement of the mechanical properties was observed, owing to significant damage of the structure of the fibers during the steam explosion process. A general decrease of mechanical properties is observed in normal polypropylene-based composites. The results are also supported by the water absorption tests: whereby the iPPMA-based composites showed good capability to return their dry properties when kept in an oven after wetting for many days. (C) 1998 John Wiley & Sons, Inc. [References: 15]
机译:扫帚纤维已被用作传统聚丙烯(iPP)和马来酸酯改性纤维(iPPMA)的增强材料。应用常规的碱处理和蒸汽爆炸提取工艺从扫帚分支中获得纤维素材料。通过熔融混合具有不同重量百分比的扫帚纤维的材料来制备复合材料。还获得了三元共混物(iPPMA / iPP /扫帚纤维5/45/50 wt),以检验利用马来酸酯聚丙烯作为增容剂的可能性。对纤维和复合材料进行热,形态和机械表征。还进行了吸水测试,以检查这些材料在潮湿条件下的行为。特别注意的是纤维/基质界面粘附性的研究。结果表明,用碱性提取的扫帚纤维增强的iPPMA基复合材料具有与短玻璃纤维增​​强的同源聚丙烯基材料相比的特定机械性能。三元共混物与相应的整个基于iPPMA的复合材料具有相似的性能。可以认为,纤维素-OH与接枝在聚丙烯主链上的马来酸酐基团之间的酯键对性能的相似性起很大作用。尽管在用蒸汽爆炸的纤维增强的样品中观察到更好的粘合性,但是由于在蒸汽爆炸过程中纤维结构的显着损坏,因此观察到的机械性能改善较少。在普通的聚丙烯基复合材料中观察到机械性能普遍下降。吸水率测试也证明了这一结果:基于iPPMA的复合材料在潮湿状态下放置几天后,表现出良好的恢复干燥性能的能力。 (C)1998 John Wiley&Sons,Inc. [参考:15]

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