Pripakhaylo Artem V, Tsypakin Alexei A, Klam Anton A, Andreichev Andrei L, Timerbaev Andrei R, Shapovalova Oksana V, Magomedov Rustam N
Semenov Research Center for Chemical Physics, Russian Academy of Sciences, Kosygin St. 4, 119991 Moscow, Russia.
UMATEX, Varshavskoe Sh. 46, 115230 Moscow, Russia.
Materials (Basel). 2024 Nov 22;17(23):5725. doi: 10.3390/ma17235725.
The results of rheological studies and thermal analysis of polymer compositions based on polyacrylonitrile copolymers (PAN) of different molecular weights and asphalt isolated by n-pentane solvent deasphalting are presented. It was found that the asphalt content in mixtures with PAN at the level of 10-30 wt.% improves the rheological properties of the polymer composite melt. In particular, the temperatures of extrusion and molding of fibers tend to reduce, and the time during which the melt retains its rheological characteristics necessary for extrusion is notably increased, from 43 to 92 min. Thermal analysis by DSC revealed no effect of asphalt additive in an amount of up to 30 wt.% on radical PAN cyclization and the subsequent stage of fiber stabilization. Our study proved the possibility of preparing polymer composites based on PAN and asphalt suitable for extrusion and eventual molding of continuous filaments of synthetic fibers with reduced cost of production.
本文给出了基于不同分子量的聚丙烯腈共聚物(PAN)的聚合物组合物以及通过正戊烷溶剂脱沥青分离出的沥青的流变学研究和热分析结果。研究发现,在PAN混合物中沥青含量为10-30 wt.%时,可改善聚合物复合材料熔体的流变性能。特别是,纤维的挤出和成型温度趋于降低,熔体保持挤出所需流变特性的时间显著增加,从43分钟增加到92分钟。通过DSC进行的热分析表明,沥青添加剂含量高达30 wt.%时,对PAN自由基环化及随后的纤维稳定阶段没有影响。我们的研究证明了制备基于PAN和沥青的聚合物复合材料的可能性,该复合材料适用于合成纤维连续长丝的挤出和最终成型,且生产成本降低。