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Rheology, Crystallization Behavior, and Dielectric Study on Molecular Dynamics of Polypropylene Composites With Multiwalled Carbon Nanotubes and Clay

机译:多壁碳纳米管和粘土聚丙烯复合材料的流变学,结晶行为和介电研究

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The study is focused on joint effects of two nanofillers in polypropylene (PP) reinforced with 3 wt% organo-clay (OC) and 0.1-5 wt% multi-wall carbon nanotubes (MWCNTs). The composites were produced by extrusion and characterized by rheology, differential scanning calorimeter (DSC), thermally stimulated depolarization currents (TSDC), and dielectric relaxation spectroscopy (DRS). Rheological data indicates a formation of a network structure related to percolation above 1 wt% nanotubes. The flow activation energy (Ea) decreases above the percolation threshold, thus, the presence of clay improves the debundling of MWCNTs and releases the segmental motion of polymer chains. The clay does not affect the crystallization behavior of PP, but the nucleation is enhanced strongly by the MWCNTs. Dielectric measurements reveal that the presence of clay affects the molecular mobility of PP at the amorphous phase. The DSC results imply that around 80 degrees C a cold crystallization process occur in the PP phase which has a significant impact on the dielectric segmental relaxation process and gives rise to the appearance of an additional process, the so called "interfacial" relaxation process. This new relaxation process in the three-phase composites was attributed to an interfacial polarization process due to blocking of charge carriers at polymer/clay interfaces. (C) 2015 Society of Plastics Engineers
机译:这项研究的重点是聚丙烯(PP)中的两种纳米填料的联合效应,聚丙烯用3 wt%的有机粘土(OC)和0.1-5 wt%的多壁碳纳米管(MWCNT)增强。该复合材料是通过挤出生产的,并具有流变学,差示扫描量热仪(DSC),热激发去极化电流(TSDC)和介电弛豫谱(DRS)进行表征。流变学数据表明与高于1 wt%的纳米管的渗滤有关的网络结构的形成。流动活化能(Ea)降低到超过渗滤阈值,因此,粘土的存在改善了MWCNT的解捆并释放了聚合物链的分段运动。粘土不会影响PP的结晶行为,但MWCNT会大大增强成核作用。介电测量表明,粘土的存在会影响聚丙烯在非晶相中的分子迁移率。 DSC结果表明,在PP相中发生约80℃的冷结晶过程,这对介电分段弛豫过程具有显着影响,并导致出现了另外的过程,即所谓的“界面”弛豫过程。三相复合材料中这种新的弛豫过程归因于界面极化过程,这是由于聚合物/粘土界面处的载流子阻塞所致。 (C)2015年塑料工程师学会

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