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Processing, structure, and properties of gel spun PAN and PAN/CNT fibers and gel spun PAN based carbon fibers

机译:凝胶纺PAN和PAN / CNT纤维以及凝胶纺PAN基碳纤维的加工,结构和性能

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Polyacrylonitrile (PAN) and PAN/carbon nanotube (PAN/CNT) fibers were manufactured through dry-jet wet spinning and gel spinning. Fiber coagulation occurred in a solvent-free or solventonsolvent coagulation bath mixture with temperatures ranging from -50 to 25 degrees C. The effect of fiber processing conditions was studied to understand their effect on the as-spun fiber cross-sectional shape, as well as the as-spun fiber morphology. Increased coagulation bath temperature and a higher concentration of solvent in the coagulation bath medium resulted in more circular fibers and smoother fiber surface. as-spun fibers were then drawn to investigate the relationship between as-spun fiber processing conditions and the drawn precursor fiber structure and mechanical properties. PAN precursor fiber tows were then stabilized and carbonized in a continuous process for the manufacture of PAN based carbon fibers. Carbon fibers with tensile strengths as high as 5.8 GPa and tensile modulus as high as 375 GPa were produced. The highest strength PAN based carbon fibers were manufactured from as-spun fibers with an irregular cross-sectional shape produced using a -50 degrees C methanol coagulation bath, and exhibited a 61% increase in carbon fiber tensile strength as compared to the carbon fibers manufactured with a circular cross-section. POLYM. ENG. SCI., 55:2603-2614, 2015. (c) 2015 Society of Plastics Engineers
机译:聚丙烯腈(PAN)和PAN /碳纳米管(PAN / CNT)纤维是通过干喷湿纺和凝胶纺丝制造的。纤维凝固发生在无溶剂或溶剂/非溶剂凝固浴混合物中,温度范围为-50到25摄氏度。研究了纤维加工条件的影响,以了解它们对初纺纤维横截面形状的影响,例如以及初纺纤维形态。凝结浴温度的升高和凝结浴介质中溶剂浓度的提高,导致纤维更多,纤维表面更光滑。然后拉伸初纺纤维以研究初纺纤维加工条件与拉伸前体纤维结构和机械性能之间的关系。然后,在用于制造PAN基碳纤维的连续过程中,将PAN前体纤维丝束稳定并碳化。制备了具有高达5.8 GPa的拉伸强度和高达375 GPa的拉伸模量的碳纤维。最高强度的PAN基碳纤维由使用-50摄氏度甲醇凝固浴生产的具有不规则横截面形状的初生纤维制成,与制造的碳纤维相比,碳纤维的拉伸强度提高了61%具有圆形横截面。 POLYM。 ENG。 SCI。,55:2603-2614,2015.(c)2015年塑料工程师学会

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