Research progress of flash spinning nano/micro-fiber nonwoven technology

被引:0
|
作者
Xia L. [1 ]
Cheng B. [2 ]
Xi P. [3 ]
Zhuang X. [1 ]
Zhao Y. [1 ]
Liu Y. [1 ]
Kang W. [1 ]
Ren Y. [1 ]
机构
[1] School of Textile Science and Engineering, Tiangong University, Tianjin
[2] College of Chemical Engineering and Materials Science, Tianjin University of Science & Technology, Tianjin
[3] School of Material Science and Engineering, Tiangong University, Tianjin
来源
Fangzhi Xuebao/Journal of Textile Research | 2020年 / 41卷 / 08期
关键词
Flash spinning; Nano/micro-fiber; Nonwoven; Protective suit; Spinning principle;
D O I
10.13475/j.fzxb.20200303306
中图分类号
学科分类号
摘要
In order to expand the preparation methods of nano/micro-fibers and broaden the source of medical protective suit fabrics, the research progress in flash spinning nano/micro-fibers nonwoven and the application as protective suit were reviewed. The types of raw materials used in flash spinning and the current problems were introduced, and the spinning technology, process and products were described. The research status and trends of flash spinning technology were summarized, while the characteristics and applications of flash spinning nonwovens were analyzed. The flash spinning nonwovens, due to their structural and property features, can be used as a protective fabric, and the classification and the existing problems in current use were discussed. The flash spinning technology is a nano/micro-fiber nonwoven fabric preparation technology with good development prospect at present, and it is of great significance to improve the technical level of China's nonwovens industry and protect people's health and life. Copyright No content may be reproduced or abridged without authorization.
引用
收藏
页码:166 / 171
页数:5
相关论文
共 35 条
  • [1] REVAIAH R, KOTRESH T., Technical textiles for military applications, Journal of The Textile Institute, 111, 2, pp. 273-308, (2020)
  • [2] GUO D C, SUN Z Y, XU L D., Water-soluble luminescent-electrical magnetic trifunctional composite nanofibers prepared via electrospinning technique, Materials Letters, 159, 11, pp. 159-162, (2015)
  • [3] TANG X Y, YU Y., Electrospinning preparation and characterization of alumina nanofibers with high aspect ratio, Ceramics International, 41, 8, pp. 9232-9238, (2015)
  • [4] ZHOU W P, LI Z, ZHANG Q., Gas flow-assisted alignment of super long electrospun nanofibers, Journal of Nanoscience and Nanotechnology, 7, 8, pp. 2667-2673, (2007)
  • [5] CAI Li, WU Hao, LIAO Xuepin, Et al., Synthesis and photo-catalytic activities of TiO<sub>2</sub> and La/TiO<sub>2</sub> nano-fiber using collagen fiber as template, Chinese Journal of Inorganic Chemistry, 27, 4, pp. 611-618, (2011)
  • [6] PAPEN B, LAN B, GRIJPMA D, Et al., A facile method to fabricate poly(L-lactide) nano-fibrous morphologies by phase inversion, Acta Biomaterialila, 6, 7, pp. 2477-2483, (2010)
  • [7] ALASSOD A, ABEDALWAFA M, XU G B., Evaluation of polypropylene melt blown nonwoven as the interceptor for oil, Environmental Technology, 1, pp. 1-36, (2020)
  • [8] DU Chenhui, XIA Lei, LIU Ya, Application and researches of the flash-spinning ultra-fine fiber nonwovens, Nonwovens, 16, 2, pp. 27-30, (2008)
  • [9] MCGINTY B, MILDLOTHINAN V., Flash-spun productes
  • [10] SHIN H., Flash spinning solution and flash-spinning process using straight chain hydrofluorocar-bon co-solvents