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Properties of Styrene–Maleic Anhydride Copolymer Compatibilized Polyamide 66/Poly (Phenylene Ether) Blends: Effect of Maleic Anhydride Concentration and Copolymer Content

机译:苯乙烯 - 马来酸酐共聚物的性质相容化聚酰胺66 /聚(苯基醚)共混物:马来酸酐浓度和共聚物含量的影响

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Polyamide 66 (PA66)/poly (2,6-dimethyl-1,4-phenylene ether) (PPE) blends with a ratio of 50/50 (w/w) were produced by a twin-screw compounder. The immiscible blends were compatibilized using two different styrene–maleic anhydride copolymers (SMA) with a low (SMA low ) and a high (SMA high ) maleic anhydride (MA) concentration of 8 and 25 wt%, respectively. Furthermore, the SMA content was varied from 0 to 10 wt%. The influence of MA concentration and SMA content on the morphological and thermomechanical properties of PA66/PPE blends was investigated. Herein, we established correlations between the interfacial activity of the SMA with blend morphology and corresponding tensile properties. A droplet-sea to co-continuous morphology transition was shown by scanning electron microscopy to occur between 1.25 and 5 wt% in the case of SMA high . For SMA low , the transition started from 7.5 wt% and was still ongoing at 10 wt%. It was found that SMA low with 10 wt% content enhanced the tensile strength (10%) and elongation at break (70%) of PA66/PPE blends. This improvement can be explained by the strong interfacial interaction of SMA low within the blend system, which features the formation of nanoemulsion morphology, as shown by transmission electron microscopy. Very small interdomain distances hinder matrix deformations, which forces debonding and cohesive failure of the PPE phase as a “weaker” main deformation mechanism. Due to a lack of interfacial activity, the mechanical properties of the blends with SMA high were not improved.
机译:通过双螺杆复合物制备具有50/50(w / w)的比例的聚酰胺66(PA66)/聚(2,6-二甲基-1,4-苯基醚)(PPE)共混物。使用具有低(SMA低)的两种不同的苯乙烯 - 马来酸酐共聚物(SMA)和高(SMA高)马来酸酐(MA)浓度为8和25wt%的苯乙烯 - 马来酸酐共聚物(SMA)的混合共混物。此外,SMA含量从0到10wt%变化。研究了MA浓度和SMA含量对PA66 / PPE共混物的形态学和热机械性能的影响。在此,我们建立了SMA的界面活性与共混形态和相应的拉伸性能之间的相关性。通过扫描电子显微镜显示液滴到共连续形态转变,在SMA高的情况下,在1.25和5wt%之间发生。对于SMA低,转变从7.5重量%开始,仍然在10wt%。发现SMA低,10wt%含量增强了抗拉强度(10%)和断裂(70%)的PA66 / PPE共混物的伸长率。这种改进可以通过混合物系统内SMA低的强界面相互作用来解释,其特征在于纳米乳液形态的形成,如透射电子显微镜所示。非常小的互补距离阻碍了PPE阶段的剥离和粘性破坏作为“弱”的主要变形机制。由于缺乏界面活性,没有改善具有SMA高的共混物的机械性能。

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