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首页> 外文期刊>Russian physics journal >Biodegradable Electrically Conductive Polycaprolacton-Based Composites Filled with Carbon Nanotubes
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Biodegradable Electrically Conductive Polycaprolacton-Based Composites Filled with Carbon Nanotubes

机译:可生物降解的导电聚己酰胺基复合材料填充有碳纳米管

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Electrophysical, morphological, rheological, and structural properties of new polymer composites based on polycaprolactone filled with single-walled carbon nanotubes are studied. It is shown that the percolation threshold for the developed composites is observed when the carbon nanotubes content is about 0.1 wt %. It is found that the degree of crystallinity of the composites increases by more than 60% compared to the pure polycaprolactone. The addition of carbon nanotubes to the polymer matrix leads to a decrease in the average size of crystallites, while their number increases essentially. It is shown that the developed composites can be treated by extrusion. Even when the content of carbon nanotubes is 1.0 wt %, the melt flow index is at least 0.5 g/10 min
机译:基于填充用单壁碳纳米管的聚己内酯的新型聚合物复合材料的电神法,形态学,流变学和结构性能。 结果表明,当碳纳米管含量约为0.1wt%时,观察到发育复合材料的渗透阈值。 发现与纯多己内酯相比,复合材料的结晶度增加了60%以上。 向聚合物基质中加入碳纳米管导致微晶的平均尺寸的降低,而它们的数量基本上增加。 结果表明,开发的复合材料可以通过挤出处理。 即使当碳纳米管的含量为1.0wt%时,熔体流量指数也为至少0.5g / 10min

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