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An Investigation on Dispersion State of Graphene in Polypropylene/Graphite Nanocomposite with Extensional Flow Mixing

机译:具有延伸流动混合的聚丙烯/石墨纳米复合材料中石墨烯分散状态研究

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摘要

Graphene nanoplatelets (GNP) have attracted considerable attention because of their excellent mechanical, thermal and electrical properties. Many researchers have tried to exfoliate GNP directly from graphite (Gr) in polymer by shear flow mixing process with twin-screw extruder, internal mixer and so on. By usual shear mixing, however, exfoliation of Gr into GNP is very difficult because of inefficiency process. Therefore, we focused on the extensional flow for exfoliating to GNP from Gr. In this study, the mixing effect of pure extensional flow for exfoliating into GNP was investigated by comparing with shear flow. Primary, PP/Gr masterbatch pellets were extruded by capillary rheometer equipped with orifice die (i.e. extensional flow) and capillary die (i.e. shear flow). Then, mixing effect was discussed by morphological and rheological analysis. As the results, extensional flow can exfoliate into few layer GNP with keeping larger sure face area by comparing shear flow and storage modulus G' was improved as the extensional stress is higher.
机译:由于其优异的机械,热和电性能,石墨烯纳米纳薄(GNP)引起了相当大的关注。许多研究人员试图通过用双螺杆挤出机,内部混合器等剪切流动混合方法直接从聚合物中的石墨(GR)进行GNP。然而,通常剪切混合,由于效率低下过程,GR进入GNP的剥离是非常困难的。因此,我们专注于从GR中剥离到GNP的延伸流量。在该研究中,通过与剪切流程进行比较,研究了纯延伸流量来剥离到GNP中的混合效果。初级,PP / GR母料颗粒被配备有孔芯片(即延伸流量)和毛细管模具(即剪切流程)的毛细管流变仪挤出。然后,通过形态学和流变分析讨论了混合效果。结果,延伸流动可以通过比较剪切流量保持更大的面部面积来剥离到几层GNP中,并且储存模量G'随着延伸应力较高而得到改善。

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