首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Influence of the viscosity ratio in PC/SAN blends filled with MWCNTs on the morphological, electrical, and melt rheological properties
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Influence of the viscosity ratio in PC/SAN blends filled with MWCNTs on the morphological, electrical, and melt rheological properties

机译:MWCNTs填充的PC / SAN共混物中粘度比对形态,电学和熔体流变性质的影响

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摘要

Co-continuous polycarbonate (PC)/poly(styrene-acrylonitrile) (SAN) = 60/40 wt.% blends were filled with 1 wt.% multi-walled carbon nanotubes (MWCNTs), which selectively localized within the PC component. To study the influence of the viscosity ratio, PCs with different viscosities were selected resulting in PC/SAN viscosity ratios (at 100 rad/s) between 1.2 and 4.5. With increasing viscosity ratio, smaller blend structures were observed. Furthermore, optical microscopy revealed that the filler dispersion was improved with decreasing PC viscosity. The highest electrical conductivity was achieved for the blend composite with the coarsest morphology, containing the low viscosity PC and having the lowest PC/SAN viscosity ratio. Transmission electron microscopy analysis indicated that for the composite prepared with high viscosity PC, not all of the incorporated MWCNTs were able to localize completely into the PC component. Instead, some MWCNTs were found to be stacked at the interface of the two polymers, indicating that the high PC melt viscosity had a restricting effect on the movement of the MWCNTs. Moreover, with electrical conductive atomic force microscopy, it was proven that small, spherical PC particles, even if filled with CNTs, do not take part in the conductive network of the blend composites. Rheological analyses showed a correlation with the morphological analysis and the electrical conductive behavior of the blend composites. In summary, a lower viscosity ratio between the blend components, in which upon addition due to thermodynamic reasons the CNTs localize (here PC), and the other component (here SAN) is favorable for high electrical conductivity values.
机译:共连续聚碳酸酯(PC)/聚(苯乙烯-丙烯腈)(SAN)= 60/40 wt。%的共混物填充有1 wt。%的多壁碳纳米管(MWCNT),这些碳纳米管选择性地位于PC组件内。为了研究粘度比的影响,选择了不同粘度的PC,结果PC / SAN粘度比(在100 rad / s时)在1.2和4.5之间。随着粘度比的增加,观察到较小的共混物结构。此外,光学显微镜显示,随着PC粘度的降低,填料的分散性得到改善。对于具有最粗糙形态,包含低粘度PC和最低PC / SAN粘度比的共混复合物,可以获得最高的电导率。透射电子显微镜分析表明,对于用高粘度PC制备的复合材料,并非所有掺入的MWCNT都能完全定位在PC组件中。取而代之的是,发现一些MWCNT堆积在两种聚合物的界面上,这表明高PC熔体粘度对MWCNT的运动具有限制作用。此外,通过导电原子力显微镜,已经证明,即使球形小PC颗粒填充了CNT,也不会参与共混复合物的导电网络。流变分析显示出与共混复合物的形态分析和导电性能相关。总而言之,共混物组分之间的较低的粘度比,其中由于热力学原因而添加时,CNT局部化(此处为PC),而另一种组分(此处为SAN)有利于获得高电导率值。

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