纳米纤维素表面性能对人造纤维湿纺工艺的影响:挤出、混凝和干燥

IF 3.9 3区 工程技术 Q2 ENGINEERING, CHEMICAL
Junqi Gao, Hui Mao, Yuying Kong, Zihuan Zhang, Khak Ho Lim, Wen-Jun Wang and Xuan Yang*, 
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引用次数: 0

摘要

利用植物细胞壁的基本构建块,纤维素纳米原纤维(CNFs)可以赋予最终材料优异的机械性能。例如,基于cnf的湿纺纤维表现出优越的机械性能,超过了其源材料植物纤维。如此高的力学性能与CNFs的取向密切相关;因此,以往的研究大多集中在优化纺纱速率或引入后拉伸来提高该参数。本研究研究了CNF表面性质对CNF取向的影响,这在文献中经常被忽视:1)在挤压过程中,CNF表面性质影响纺丝悬浮液的流变行为,进而影响CNF的取向势;2)在凝聚过程中,它们控制着CNF与反溶剂的亲和力,从而决定了CNF凝胶的收缩率;3)在干燥过程中,它们直接影响反溶剂蒸发引起的毛细力,这显著地决定了CNF在最终产品中的取向。总的来说,这项基础研究为胶体纳米颗粒(如CNFs)的组装行为提供了更深入的见解,这可以推动高性能人造纤维的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The Effect of Nanocellulose Surface Properties on the Corresponding Wet-Spinning Process for Man-Made Fibers: Extrusion, Coagulation, and Drying

The Effect of Nanocellulose Surface Properties on the Corresponding Wet-Spinning Process for Man-Made Fibers: Extrusion, Coagulation, and Drying

Utilizing the elementary building blocks of plant cell walls, cellulose nanofibrils (CNFs), can give final materials excellent mechanical properties. For instance, CNF-based wet-spun fibers exhibit superior mechanical properties, surpassing their source materials, plant fibers. Such high mechanical performance is closely related to CNFs’ orientation; thus, most previous research has focused on optimizing spinning rates or introducing post-stretching to enhance this parameter. In this study, the effects of the CNF surface properties on CNF orientation were investigated, which are often neglected in the literature: 1) during extrusion, the CNF surface properties affect the rheological behaviors of the spinning suspension, which in turn influences CNFs’ orientation potential; 2) during coagulation, they govern the affinity between CNFs and antisolvents, thereby determining the shrinkage of CNF gels; 3) during drying, they directly impact capillary forces induced by the evaporation of antisolvents, which significantly determine the CNF orientation in the end products. Overall, this fundamental study provides deeper insights into the assembling behavior of colloidal nanoparticles such as CNFs, which can advance the development of high-performance man-made fibers.

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来源期刊
Industrial & Engineering Chemistry Research
Industrial & Engineering Chemistry Research 工程技术-工程:化工
CiteScore
7.40
自引率
7.10%
发文量
1467
审稿时长
2.8 months
期刊介绍: ndustrial & Engineering Chemistry, with variations in title and format, has been published since 1909 by the American Chemical Society. Industrial & Engineering Chemistry Research is a weekly publication that reports industrial and academic research in the broad fields of applied chemistry and chemical engineering with special focus on fundamentals, processes, and products.
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