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Melt spinning of poly(acrylonitrile)-co-styrene copolymer

机译:聚(丙烯腈)-CO-苯乙烯共聚物的熔融纺丝

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The search for alternative processes and high performance materials precursors for carbon fibers, has been continuously the aim for use in the aerospace, automotive, energy and sports goods market. The reduction in the precursor production cost is then essential to allow the installation of an industrial plant to produce a general purpose carbon fiber. Polyacrylonitrile has been the main precursor for carbon fiber production. It has been produced by the wet and dry spinning process since it has been discovered in the beginning of the forties. Nowadays, the extrusion process of PAN fibers shows potential of cost reduction in relation to the wet spinning method. This innovative technology enables spinning by melting PAN polymer by using glycerin as the primary plasticizer, avoiding the use of highly toxic solvents. In the present work, PAN copolymer was copolymerized by conventional aqueous suspension. Its characterization was performed by FT-IR, GPC and DSC analysis. The fibers obtained by extrusion process were characterized by SEM, DSC/TGA analysis and kinetics of the thermal stabilization process was studied by Kissinger method. The results showed that styrene monomer was suitable for polymerization with PAN leading to a molecular weight M_n= 46,000 g/mol and M_W = 138,000 g/mol. The PAN-co-Styrene copolymer was suitable for obtaining extruded PAN fibers continuously with morphological and thermal properties having properties similar to commercial PAN fibers.
机译:寻找碳纤维的替代工艺和高性能材料前体,一直是在航空航天,汽车,能源和体育用品市场中使用的旨在。前体生产成本的降低是必不可少的,以允许安装工业厂以产生通用碳纤维。聚丙烯腈是碳纤维生产的主要前体。它已经由潮湿和干燥的纺纱过程生产,因为它在四十年代开始时被发现。如今,PAN纤维的挤出过程显示了与湿纺丝方法有关的成本降低的潜力。这种创新技术使通过使用甘油作为初级增塑剂来旋转锅聚合物,避免使用高毒性溶剂。在本作本作中,通过常规水性悬浮液共聚平移共聚物。其表征是通过FT-IR,GPC和DSC分析进行的。通过挤出方法获得的纤维通过SEM,通过Kissinger方法研究了DSC / TGA分析和热稳定过程的动力学。结果表明,苯乙烯单体适用于锅的聚合,导致分子量M_N = 46,000g / mol,M_W = 138,000g / mol。泛共苯乙烯共聚物适用于连续地用形态学和热性能连续地获得挤出的盘纤维,其具有与商业锅纤维类似的性质。

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