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Research on the multi-scale microstructure of polyacrylonitrile precursors prepared by a dry-jet wet spinning process

机译:干式湿纺法制备的聚丙烯腈前体多尺度微观结构研究

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摘要

An understanding of the properties of polyacrylonitrile (PAN) precursors is an essential precondition for manufacturing high-performance carbon fibres, and the structure of the precursors has a direct and profound effect on the performance of carbon fibres. In this study, PAN precursors, formed in a multistage coagulation bath, were spun by a dry-jet wet spinning process, and the multi-scale microstructure and morphology of the precursors were investigated by separating the fibrils from the precursors. Scanning electron microscopy and high-resolution transmission electron microscopy were employed to examine the surface morphology, cross-sectional morphology and microstructure of the precursors. X-ray diffraction was used to characterize the crystal structure. The micropore sizes of the precursors were determined with nitrogen adsorption experiments; the adsorption increased after ultrasonic etching and decreased with an increase in the treated concentration. All the results demonstrated that the PAN precursors had a multi-scale microstructure, the precursors consisted of fibrils with diameters of 80-200 nm and the fibrils consisted of some microfibrils with diameters of 20-40 nm, including the periodic tissues with thicknesses of 16-30 nm perpendicular to the fibre axis.
机译:理解聚丙烯腈(PAN)前体的性质是制造高性能碳纤维的基本前提,并且前体的结构对碳纤维的性能具有直接和深刻的影响。在该研究中,通过干式湿法纺丝工艺在多级凝固浴中形成的PAN前体,通过将原纤维从前体分离,研究了前体的多尺度微观结构和形态。使用扫描电子显微镜和高分辨率透射电子显微镜检查前体的表面形态,横截面形态和微观结构。 X射线衍射用于表征晶体结构。用氮吸附实验测定前体的微孔尺寸;超声波蚀刻后吸附增加并随着处理浓度的增加而降低。所有结果表明,PAN前体具有多尺度的微观结构,前体由直径为80-200nm的原纤维组成,原纤维由具有20-40nm直径的一些微纤维组成,包括具有16个厚度的周期性组织-30 nm垂直于纤维轴。

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