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Enhancement of Carbon Nanotube Particle Distribution in PPS/PEEK/Carbon Nanotube Ternary Composites with Sausage-Like Structure

机译:具有香肠样结构的PPS / PEEK /碳纳米管三元复合材料中碳纳米管颗粒分布的增强

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摘要

Carbon nanomaterial particles were selectively distributed in an incompatible and high-melting-temperature polymer blend interface, or in a particular phase, to obtain conductive composites. The composite products revealed poor morphology stability and mechanical performance due to processing several times. Poly(phenylene sulfide) (PPS) and poly(ether ether ketone) (PEEK) polymers with large differences of processing temperatures were selected as blend components to obtain a compatible blend. PPS/PEEK/multi-walled carbon nanotube (MWCNT) ternary nanocomposites were prepared using a controlled melt blending process. The composite samples with similar sausage-like structures of PEEK, as a dispersed phase, promote MWCNT to maximize concentration distribution in the PPS continuous phase. As a result, the theoretical percolation threshold of the composite reduced to 0.347 wt %. Moreover, the conductivity of the composite remained stable even after processing several times. CNTs revealed a particular effect when distributed selectively in this kind of system: it can enhance the dispersion of phases and also provide conductivity to the blend at small CNT contents, which can provide more useful ideas for the development of high-melting-temperature and antistatic or conductive plastic materials.
机译:将碳纳米材料颗粒选择性地分布在不相容的高熔点聚合物共混物界面中或特定相中,以获得导电复合材料。由于多次加工,该复合产品显示出差的形态稳定性和机械性能。选择加工温度差异较大的聚苯硫醚(PPS)和聚醚醚酮(PEEK)聚合物作为共混物组分,以获得相容的共混物。 PPS / PEEK /多壁碳纳米管(MWCNT)三元纳米复合材料是使用受控的熔融共混工艺制备的。具有类似PEEK香肠样结构的复合样品作为分散相,可促进MW​​CNT最大化PPS连续相中的浓度分布。结果,复合材料的理论渗透阈值降低至0.347重量%。此外,即使经过多次处理,复合材料的电导率仍保持稳定。碳纳米管在这种系统中选择性分布时显示出特殊效果:它可以增强相的分散性,并在低碳纳米管含量下为混合物提供导电性,这可以为开发高熔点和抗静电性提供更多有用的思路或导电塑料材料。

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