首页> 外文期刊>Rheologica Acta: An International Journal of Rheology >The influence of polypropylene-block/graft-polycaprolactone copolymers on melt rheology, morphology, and dielectric properties of polypropylene/polycarbonate blends
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The influence of polypropylene-block/graft-polycaprolactone copolymers on melt rheology, morphology, and dielectric properties of polypropylene/polycarbonate blends

机译:聚丙烯 - 嵌段/移植物 - 聚己内酯共聚物对聚丙烯/聚碳酸酯共混物的熔体流变学,形态学和介电性能的影响

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The paper discusses the relationship between rheology and morphology of immiscible polypropylene (matrix))/polycarbonate (dispersed phase) blends compatibilized with novel polypropylene-polycaprolactone block and graft copolymers. Transmission electron microscopy (TEM) experiments revealed uniform droplet morphologies and a reduction of the average size of the dispersed phase upon addition of the compatibilizer. The results suggested the influence of the molecular weight distribution (MWD)/chemical composition distribution (CCD) and topology of the compatibilizer on the compatibilizing performance. Graft copolymers were found to be most effective in reducing the size of the dispersed phase, whereas the performance of block copolymers appeared to be highly dependent on the block length of PP. Small-amplitude oscillatory theological experiments revealed an increase in elasticity at low frequencies caused by the interfacial interactions induced by the compatibilizer. The effect was quantified using the relaxation time spectrums that displayed the additional peak at longer relaxation times via Gramespacher-Meissner method. Broadband dielectric spectroscopy (BDS) revealed the influence of the copolymer architecture and molecular weight of the polypropylene blocks on the properties of the interfacial polarization, which was in line with both rheology and morphology data.
机译:本文讨论了用新型聚丙烯 - 聚己内酯嵌段和接枝共聚物相容化的不混溶聚丙烯(基质)/聚碳酸酯(分散相)共混物的流变与形态的关系。透射电子显微镜(TEM)实验显示出均匀的液滴形态和在加入增容剂时减少分散相的平均尺寸。结果表明分子量分布(MWD)/化学成分分布(CCD)和增容剂的拓扑对相容性能的影响。发现接枝共聚物在减小分散相的尺寸方面是最有效的,而嵌段共聚物的性能似乎高度依赖于PP的嵌段长度。小振幅振荡神学实验表明,由于增容剂诱导的界面相互作用引起的低频下弹性增加。使用克素母线 - Meissner方法,使用弛豫时间谱量化额外峰值的弛豫时间谱来量化效果。宽带介电光谱(BDS)揭示了聚丙烯嵌段的共聚物结构和分子量对界面极化性质的影响,这与流变学和形态数据都符合。

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