Analysis on the Development Feasibility of a High Quality Antibacterial Medical Material

  • Xinyue Zhang College of Textiles, Donghua University
  • Rongjia Zhang College of Textiles, Donghua University
  • Minen Cao College of Textiles, Donghua University
  • Tingxuan Yang College of Information Science and Technology, Donghua University
Keywords: Flax Fiber, Antibacterial, Wet Spinning, Knitted Fabric, Medical Textile

Abstract

The wet process antibacterial yarn and wet process. Knitted fabric of flax are made by using wet spinning technology and knitting manufacturing technology of flax, test the main properties of yarn and fabric, the research progress of the application of flax products in medical textiles was reviewed. This paper mainly analyzes the feasibility of flax wet process, antibacterial yarn and flax wet process and knitted fabric as flax wet process antibacterial medical materials from two aspects of strength and knitted structure.

References

Li H, Zhuang Y, Li H, et al. Preparation, characterization, antibacterial properties and hydrophobic evaluation of SiO2/Ag nanosol coated cotton/linen fabric. The Journal of The Textile Institute 2020; 111(1). doi: 10.1080/00405000.2019.1682758.

Akin DE, Morrison WH, Rigsby LL, et al. Influence of water presoak on enzyme-retting of flax. Industrial Crops & Products 2003; 17(3): 149-159. doi: 10.1016/S0926-6690(02)00053-5.

Chen G, Ao L, Qian C. Analysis of test method for softness of Nonwovens for medical and health use (in Chinese). Industrial Textiles 2019; 37(9): 40-44.

Tian J, Kong W, Gu Z. Performance test and analysis of flax noil and polyester blended yarn (in Chinese). Cotton Textile Technology 2001; (4): 21-24. doi: 10.3969/j.issn.1001-7415.2001.04.005.

Tian Y, Liu X, Zheng X, et al. Effect of acid solution pre leaching on enzyme degumming and fiber properties of flax (in Chinese). Journal of Textile 2016; 37(5): 75-78+96. doi: 10.13475/j.fzxb.20150401305.

Zhan Y, Gao Q, Du F, et al. Research and development of high-grade pure linen knitted fabrics (in Chinese). Knitting Industry 2015; (2): 1-3..

Winter GD. Effect of air exposure and occlusion on experimental human skin wounds. Nature 1963; 200(4904): 378-379. doi: 10.1038/200378a0.

Li Y. Study on comfort and antibacterial properties of hemp fabric (in Chinese). Suzhou: Soochow University; 2004. p. 14-15. doi: 10.7666/d.y781846.

Wu J, Wei J. Development of antibacterial flax fabric (in Chinese). Dyeing and Finishing Technology 2001; (4): 18-19+4.

Cao Y. Study on fine modification and spinnability of flax fiber (in Chinese). Shanghai: Donghua University; 2006. p. 13-15. doi: 10.7666/d.y1036809.

Ma C, Yu Z. Research status of natural fiber reinforced medical composite (in Chinese). Modern Medicine and Health 2012; 28(10): 92-94.

Liu L. Study on flax nonwovens reinforced composites (in Chinese). Tianjin: Tianjin University of Technology; 2004. p. 5-6.

Gong J, Zhang L, Cui H. Research status and prospect of self reinforcement technology of biomedical materials (in Chinese). Polymer Bulletin 2005; (2): 59-64.

Wang C, Wang R, Jiang Z, et al. Study on the preparation and properties of hemp fiber reinforced fully degradable composite (in Chinese). Plastics 2008; (2): 46-49+65.

Arbelaiz A, Fernández B, Valea A, et al. Mechanical properties of short flax fibre bundle/poly (ε-caprolactone) composites: Influence of matrix modification and fibre content. Carbohydrate Plolymers 2006; 64(2): 224-232. doi: 10.1016/j.carbpol.2005.11.030.

Zhang X, Ma P, Miao X. Application of knitted structure in the field of medical textiles (in Chinese). Journal of Textile Science and Engineering 2018; 35(1): 164-170.

Zhang B, Bo Y, Geng L, et al. Development of multilayer composite knitted medical dressings (in Chinese). Shanghai Textile Technology 2011; 39(5): 43-44.

Long X, Zhu J. Study on the preparation and properties of Marcel knitted medical dressings (in Chinese). Knitting Industry 2013; (7): 54-57.

Li Y, Zhang P, Wang W, et al. Development of knitted composite artificial trachea (bracket) (in Chinese). Journal of Donghua University (Natural Science Edition) 2003; (4): 64-67.

Published
2020-12-30
Section
Original research article