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Thermal Stabilization study of polyacrylonitrile fiber obtained by extrusion

机译:挤出制得的聚丙烯腈纤维的热稳定性研究

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A low cost and environmental friendly extrusion process of the Polyacrylonitrile (PAN) polymer was viabilized by using the 1,2,3-propanetriol (glycerol) as a plasticizer. The characterization of the fibers obtained by this process was the object of study in the present work. The PAN fibers were heat treated in the range of 200 ?°C to 300 ?°C, which is the temperature range related to the stabilization/oxidation step. This is a limiting phase during the carbon fiber processing. The characterization of the fibers was made using infrared spectroscopy, thermal analysis and microscopy. TGA revealed that the degradation of the extruded PAN co-VA fibers between 250 ?°C and 350 ?°C, corresponded to a 9% weight loss to samples analyzed under oxidizing atmosphere and 18% when the samples were analyzed under inert atmosphere. DSC showed that the exothermic reactions on the extruded PAN co-VA fibers under oxidizing synthetic air was broader and the cyclization started at a lower temperature compared under inert atmosphere. Furthermore, FT-IR analysis correlated with thermal anlysis showed that the stabilization/oxidation process of the extruded PAN fiber were coherent with other works that used PAN fibers obtained by other spinning processes.
机译:通过使用1,2,3-丙三醇(甘油)作为增塑剂,可以使聚丙烯腈(PAN)聚合物的低成本环保挤出工艺成为可能。通过该方法获得的纤维的表征是当前工作的研究对象。将PAN纤维在与稳定化/氧化步骤有关的温度范围200℃〜300℃的范围内进行热处理。这是碳纤维加工期间的限制阶段。使用红外光谱,热分析和显微镜对纤维进行表征。 TGA表明,在250℃和350℃之间挤出的PAN co-VA纤维的降解,相当于在氧化气氛下分析的样品重量损失了9%,而在惰性气氛下分析的样品重量损失了18%。 DSC显示,与惰性气氛相比,在氧化的合成空气下,在挤出的PAN co-VA纤维上的放热反应更宽,并且环化在较低的温度下开始。此外,与热分析相关的FT-IR分析表明,挤出的PAN纤维的稳定化/氧化过程与使用通过其他纺丝方法获得的PAN纤维的其他工作相一致。

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