首页> 外文期刊>Advanced Composites Letters >COMPARATIVE STUDY BETWEEN PP-g-MAH AND PP-methyl-POSS AS COMPATIBILIZER FOR NanoSiO_2/PP COMPOSITES: MECHANICAL AND MORPHOLOGICAL PROPERTIES
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COMPARATIVE STUDY BETWEEN PP-g-MAH AND PP-methyl-POSS AS COMPATIBILIZER FOR NanoSiO_2/PP COMPOSITES: MECHANICAL AND MORPHOLOGICAL PROPERTIES

机译:PP-g-MAH与PP-甲基-POSS作为纳米SiO_2 / PP复合材料的相容剂的对比研究:力学和形态学性能

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摘要

The work presented in this paper discussed the effect of two types of compatibilizer such as polypropylene grafted maleic anhydrate (PP-g-MAH) and polypropylene methyl polyhedral oligomeric silsesquioxane (PP-methyl-POSS) in nanosilica/polypropylene (nanoSiO_2/PP) composites on the mechanical behaviour. Nano-SiO_2/PP composites, containing 1, 2, 3, 4 and 5 wt% of fumed silica nanoparticles were prepared using a thermo Haake internal mixer with addition of 1 wt% compatibilizer according to the total composite weight. The purposed of using the compatibilizer was to reduce the size of particles agglomerates and improve filler dispersion in the polymeric matrix. The composites were characterized by tensile and impact testing as well as SEM studies. This study clearly demonstrated that the addition of compatibilizer into the composite systems modifies the mechanical properties. Results of the mechanical properties indicate that due to its characteris-tic, each compatibilizer gives rise to increase particular mechanical properties. At low filler concentration, PP-methyl-POSS showed better stiffness in the nanoSiO_2/PP composites. While, the addition of PP-g-MAH provided better tensile and impact properties compared to PP-methyl-POSS in the rage of filler content in this study.
机译:本文介绍的工作讨论了两种类型的增容剂,如聚丙烯接枝的马来酸酐(PP-g-MAH)和聚丙烯甲基多面体低聚倍半硅氧烷(PP-methyl-POSS)在纳米二氧化硅/聚丙烯(nanoSiO_2 / PP)复合材料中的作用。在机械性能上。包含1、2、3、4和5 wt%的气相法二氧化硅纳米颗粒的纳米SiO_2 / PP复合材料是使用热Haake内部混合器制备的,根据复合材料的总重量,添加1 wt%的增容剂。使用增容剂的目的是减小颗粒团聚体的尺寸并改善填料在聚合物基质中的分散性。通过拉伸和冲击测试以及SEM研究对复合材料进行了表征。这项研究清楚地表明,在复合体系中添加相容剂会改变机械性能。机械性能的结果表明,由于其特性,每种增容剂都会增加特定的机械性能。在低填料浓度下,PP-甲基-POSS在纳米SiO_2 / PP复合材料中表现出更好的刚度。同时,在本研究中,PP-g-MAH的添加量与PP-甲基-POSS相比提供了更好的拉伸和冲击性能。

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