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Melt rheological properties of polypropylene-polyarnide6 blends compatibilized with maleic anhydride-grafted polypropylene

机译:与马来酸酐接枝聚丙烯相容的聚丙烯-聚酰胺6混合物的熔体流变性能

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The melt rheological properties of binary uncompatibilized polypropylene -polyamide6 (PP-PA6) blends and ternary blends compatibilized with maleic anhydride-grafted PP (PP-PP-g-MAH-PA6) were studied using a capillary rheometer. The experimental shear viscosities of blends were compared with those calculated from Utracki's relation. The deviation value delta between these two series of data was obtained. In binary PP-PA6 blends, when the compatibility between PP and PA6 was poor, the deformation recovery of dispersed PA6 particles played the dominant role during the capillary flow, the experimental values were smaller than those calculated, and delta was negative. The higher the dispersed phase content, the more deformed the droplets were and the lower the apparent shear viscosity. Also, the absolute value of delta increased with the dispersed phase composition. In ternary PP-PP-g-MAH-PA6 systems, when the compatibility between PP and PA6 was enhanced by PP-g-MAH, the elongation and break-up of the dispersed particles played the dominant role, and the experimental values were higher than calculated. It was observed that the higher the dispersion of the PA6 phase, the higher the delta values of the ternary blends and the larger the positive deviation. Unlike uncompatibilized blends, under high shear stress with higher dispersed phase content, the PP-g-PA6 copolymer in compatibilized blends was pulled out from the interface and formed independent micelles in the matrix, which resulted in reduced total apparent shear viscosity. The delta value decreased with increasing shear stress. (c) 2006 Society of Chemical Industry.
机译:使用毛细管流变仪研究了二元不相容聚丙烯-聚酰胺6(PP-PA6)共混物和与马来酸酐接枝的PP(PP-PP-g-MAH-PA6)相容的三元共混物的熔体流变性能。将掺混物的实验剪切粘度与根据Utracki关系计算的剪切粘度进行了比较。获得了这两个系列数据之间的偏差值delta。在二元PP-PA6共混物中,当PP与PA6之间的相容性差时,分散的PA6颗粒的变形回复在毛细管流动过程中起主要作用,实验值小于计算值,且Δ为负。分散相含量越高,液滴变形越多,表观剪切粘度越低。而且,δ的绝对值随分散相组成而增加。在三元PP-PP-g-MAH-PA6体系中,当PP-g-MAH增强PP和PA6的相容性时,分散颗粒的伸长和破裂起主导作用,实验值较高比计算的。观察到PA6相的分散度越高,三元共混物的δ值越高,正偏差越大。与不相容的共混物不同,在高剪切应力和较高分散相含量的情况下,相容性共混物中的PP-g-PA6共聚物被从界面中拉出并在基质中形成独立的胶束,这导致总表观剪切粘度降低。 δ值随着剪切应力的增加而减小。 (c)2006年化学工业协会。

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