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Morphology Mapping of Nanoparticle-Filled ImmisciblePolymer Blends in Flow: The Existence of a Critical Ratio betweenNanoparticle Concentration and Droplet Concentration

机译:纳米颗粒不混溶的形态图流动中的聚合物共混物:之间存在临界比率纳米粒子浓度和液滴浓度

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摘要

The delicate flow-induced morphology of immiscible polypropylene/polystyrene blends in the presence of silica nanoparticles (NPs) is investigated in a multiparameter space. The morphology map constructed based on in situ morphology observation reveals that a critical ratio of NP concentration to droplet concentration, which strongly depends on the NP surface chemistries and the ratio of the NP concentration to the droplet concentration, exists. Below or above the critical ratio, the NPs display diverse effects on the morphology (promote or suppress droplet coalescence). These results can be interpreted by the competition between the bridging mechanism (acceleratory effect) and the enhanced viscoelasticity (inhibitory effect) exerted by the NPs.
机译:在多参数空间中研究了在二氧化硅纳米颗粒(NPs)存在下不溶混的聚丙烯/聚苯乙烯共混物的微妙流动诱导形态。基于原位形态观察构建的形态图揭示,存在着NP浓度与液滴浓度的临界比,该临界比很大程度上取决于NP表面化学性质,并且存在NP浓度与液滴浓度的比。低于或高于临界比,NP对形态表现出多种影响(促进或抑制液滴聚结)。这些结果可以通过桥接机制(促进作用)与NPs增强的粘弹性(抑制作用)之间的竞争来解释。

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