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首页> 外文期刊>Journal of Materials Science >Effect of different polypropylenes and compatibilizers on the rheological, mechanical and morphological properties of nylon 6/PP blends
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Effect of different polypropylenes and compatibilizers on the rheological, mechanical and morphological properties of nylon 6/PP blends

机译:不同聚丙烯和相容剂对尼龙6 / PP共混物流变,力学和形态性能的影响

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摘要

In this work, the rheological, mechanical and morphological properties of nylon 6/polypropylene compatibilized blends were investigated. Two types of polypropylene were used. One with MFI of 40 g/10 min (PP H103) and the other with MFI of 3.5 g/10 min (PP H503). The compatibilizers used were polypropylene grafted with 6% of acrylic acid (PPgAA) and polypropylene grafted with 1% of maleic anhydride (PPgMA). The blends composition was 80/20 (wt%) for the PA6/PP binary blends and 80/10/10(wt%) for the nylon 6/PPgAA/polypropylene and nylon 6/PPgMA/polypropylene ternary blends. Torque rheometry analysis showed that when PPgAA and PPgMA were added to nylon 6/polypropylene blends, there was an increase in the torque, indicating that reactive compatibilization has occurred. There is no influence of the polypropylene MFI on the mechanical properties of the uncompatibilized and compatibilized blends. The impact strength of the blends containing PPgMA were greater than those of the blends containing PPgAA. The blends containing PPgAA are unstable. SEM analysis showed that PPgMA improves considerably the adhesion between PA6/PP phases, leading to good mechanical properties.
机译:在这项工作中,研究了尼龙6 /聚丙烯相容的共混物的流变,机械和形态性能。使用两种类型的聚丙烯。一种是MFI为40克/ 10分钟(PP H103),另一种是MFI为3.5克/ 10分钟(PP H503)。所用的相容剂是接枝有6%丙烯酸(PPgAA)的聚丙烯和接枝有1%马来酸酐(PPgMA)的聚丙烯。对于PA6 / PP二元共混物,共混物组成为80/20(wt%),对于尼龙6 / PPgAA /聚丙烯和尼龙6 / PPgMA /聚丙烯三元共混物,共混物组成为80/10/10(wt%)。扭矩流变分析表明,当将PPgAA和PPgMA添加到尼龙6 /聚丙烯共混物中时,扭矩增加,表明发生了反应性相容化。聚丙烯MFI对不相容和相容的共混物的机械性能没有影响。含PPgMA的共混物的冲击强度大于含PPgAA的共混物的冲击强度。含有PPgAA的混合物是不稳定的。 SEM分析表明,PPgMA显着提高了PA6 / PP相之间的附着力,从而导致了良好的机械性能。

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  • 来源
    《Journal of Materials Science 》 |2007年第13期| 5007-5012| 共6页
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    Departamento de Engenharia de Materiais Universidade Federal de Campina Grande Av. Aprígio Veloso 882 Bodocongó 58109-970 Brazil;

    Departamento de Engenharia de Materiais Universidade Federal de Campina Grande Av. Aprígio Veloso 882 Bodocongó 58109-970 Brazil;

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