形态学(生物学)
材料科学
流变学
化学工程
复合材料
粘度
纺纱
聚合物
纤维
透射电子显微镜
高分子化学
扫描电子显微镜
挤压
合成纤维
作者
Songsong Li,Yuliang Liu,Yunjiao Deng,Shiling Jia,Zhongyu Fu,Huixuan Zhang
标识
DOI:10.1080/00222348.2026.2627521
摘要
This study investigated the effects of solvent type (DMAc, DMF, DMSO) and PAN concentration (14–20 wt%) on the viscosity, viscoelasticity, homogeneity of PAN solutions, and the morphology of PAN nascent fibers. Rheological analysis confirmed shear-thinning behavior for all PAN solutions, with distinct differences among the systems. The PAN/DMSO solution exhibited the highest zero-shear viscosity (η0), the lowest flow index (n), and the smallest loss factor (tan δ), indicating the strongest chain entanglement and the highest solution stability. In contrast, the PAN/DMF solution showed the lowest η0, the highest n and tan δ, while the PAN/DMAc system displayed intermediate values. Solution homogeneity decreased with increasing PAN concentration, with the rate of decline following the order: PAN/DMSO < PAN/DMF < PAN/DMAc. Morphological and pore-structure analyses of PAN nascent fibers revealed that solvent selection critically determined the final fiber architecture: PAN/DMSO produced fibers with a compact structure, high porosity, high specific surface area, and predominantly fine pores; PAN/DMAc yielded fibers with moderate porosity and a broad, larger-pore-dominated size distribution; and PAN/DMF led to a denser structure with low porosity, low specific surface area, and a macro-porous architecture. These microstructural variations directly correlated with the rheological properties of the corresponding PAN solution.
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