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Influence of coupling agents in the preparation of polypropylene composites reinforced with recycled fibers

机译:偶联剂对再生纤维增强聚丙烯复合材料制备的影响

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The use of coupling agents based on polyolefins is an interesting strategy for the preparation of composites with marked different chemical structure between their components. That is the case of polypropylene-based composites reinforced with lignocellulose fibers. In this work a deep study of the influence of the intrinsic parameters of maleated polypropylene (MAH-PP) has been carried out in order to determine the effect of its acid number as well as molecular weight in mechanical properties of composites reinforced with low cost reinforcements, under tensile, flexural and impact stresses, flow capacity, water absorption behavior and surface morphology. The use of high functionalized MAH-PP coupling leaded to important improvements in mechanical stresses and also a lower capacity of water absorption due to the formation of thinner interfaces. In the case high molecular weight MAH-PP agents, even higher than plain polymer matrix, conducted to an interesting increase in unnotched Charpy Impact Strength attributed to a low dispersion of the coupling agent in the matrix during mixing process keeping microdomains that help to avoid crack propagation.
机译:使用基于聚烯烃的偶联剂是制备复合材料的有趣策略,复合材料之间的化学结构明显不同。木质纤维素纤维增强的聚丙烯基复合材料就是这种情况。在这项工作中,对马来酸化聚丙烯(MAH-PP)的内在参数的影响进行了深入研究,以确定其酸值以及分子量对低成本增强材料增强的复合材料的机械性能的影响。在拉伸,弯曲和冲击应力,流量,吸水性能和表面形态下。高官能化的MAH-PP联轴器的使用导致机械应力的重要改善,并且由于形成了较薄的界面而导致吸水能力降低。在高分子量MAH-PP试剂甚至比普通聚合物基体更高的情况下,由于混合过程中偶联剂在基体中的分散性较低,从而保持了微区,有助于避免开裂,从而使无缺口夏比冲击强度显着提高。传播。

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