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Effects of carbon nanotubes on processing stability of polyoxymethylene in melt-mixing process

机译:碳纳米管对熔融共混过程中聚甲醛加工稳定性的影响

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Carbon nanotubes (CNTs) filled polyoxymethylene (POM) composites were fabricated in order to form conducting pathways at a low CNT loading. It was found that addition of CNTs would lead to a drastic degradation of POM in the melt-mixing process. The effects of CNTs on the processing stability of POM 14 were investigated by differential scanning calorimetry and thermogravimetric analysis. The results obtained show that the degradation behavior of POM is closely related to the surface chemical properties of CNTs. The presence of carboxylic acid groups on CNT surfaces catalyzes and accelerates the degradation of POM through acidolysis and hydrolysis, and results in a significant decrease in the processing stability of POM. However, graphitized CNT-POM mixtures show high processing stability due to the effective removal of functional groups on CNT surfaces during the graphitization process. Graphitized CNT/POM composites possess good electrical properties and a low percolation threshold of ca. 0.5 wt %, so they have a large potential to be applied as electronic components, self-controlled heaters, overcurrent protectors., and other functional devices.
机译:制备了碳纳米管(CNT)填充的聚甲醛(POM)复合材料,以便在低CNT负载下形成导电路径。发现在熔融混合过程中添加CNT会导致POM的急剧降解。通过差示扫描量热法和热重分析法研究了CNT对POM 14加工稳定性的影响。所得结果表明,POM的降解行为与CNT的表面化学性质密切相关。 CNT表面上羧酸基团的存在催化和加速POM通过酸解和水解的降解,并导致POM的加工稳定性显着下降。但是,由于在石墨化过程中有效去除了CNT表面上的官能团,因此石墨化的CNT-POM混合物显示出较高的加工稳定性。石墨化的CNT / POM复合材料具有良好的电性能,并且渗滤阈值较低。 0.5%(重量),因此它们具有很大的潜力,可用作电子组件,自控加热器,过电流保护器和其他功能器件。

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