셀룰로스 섬유를 이용한 감성쾌적소재 개발 (I) -의마가공이 직물의 태 및 열전달 특성에 미치는 영향-

Development of New Comfortable Materials Based on Cellulose Fiber (I) -Effect of Linen-like Finishing on Hand Value and Heat Transport Properties-

  • 정원영 (부산대학교 유기소재시스템공학과) ;
  • 안승국 (부산대학교 유기소재시스템공학과) ;
  • 이양헌 (동아대학교 섬유산업학과)
  • Jeong, Won-Young (Department of Organic Material Science and Engineering, Pusan National University) ;
  • An, Seung-Kook (Department of Organic Material Science and Engineering, Pusan National University) ;
  • Lee, Yang-Hun (Department of Textile Industry, Dong-A University)
  • 투고 : 2010.04.11
  • 심사 : 2010.06.02
  • 발행 : 2010.06.30

초록

Linen fabric is one of the most traditional fabrics for summer clothing because of its high permeability and cool feeling. However, it has some demerits such as low dyeability, poor dimensional stability, and high cost, which has encouraged the development of linen-like finishing based on cellulose materials. In this research, we evaluated the linen-like effects of cotton fabric on the objective hand value and heat transport properties with various concentrations of NMMO aqueous solution. Solvent bonding of cotton fabric through the treatment with NMMO aqueous solution was observed above 30% concentration. Primary hand values were calculated by KN-101-SUMMER equation for translating fabric mechanical parameters into hand values for summer suit fabrics. Stiffness(KOSHI) and anti-drape stiffness (HARI) remarkably increased with the concentrations of NMMO aqueous solution. It will provide a merit for summer clothing, which does not clinging to the skin during sweating.

키워드

과제정보

연구 과제 주관 기관 : 한국학술진흥재단

참고문헌

  1. Natural Marketing Institute, http://www.nmisolution.com
  2. 日本 環境省 地球環境局 暖化策課, http://www.env.go.jp/earth/info/coolbiz/
  3. 赤土正美, "染色加工學", 三共出版株式會社, 東京, 1989, pp.218-219.
  4. 增田俊郎, 鹽和男, "新版 纖維加工學技術", 地人書館, 東京, 1976, pp.148-149.
  5. D. L. Johnson, "Process for Strengthening Swellable Fibrous Material with an Amine Oxide and the Resulting Material", US Patent, 3,447,956(1969).
  6. D. L. Johnson, "Compounds Dissolved in Cyclic Amine Oxides", US Patent, 3,447,939(1969).
  7. D. L. Johnson, "Method of Preparing Polymers from a Mixture of Cyclic Amine Oxides and Polymers", US Patent, 3,508,941(1970).
  8. H. Chanzy, S. Nawrot, A. Peguy, and P. Smith, "Phase Behavior of the Quasiternary System N-Methylmorpholine N-oxide, Water, and Cellulose", Polym Sci: Polym Phy Ed, 1982, 20, 1909-1924. https://doi.org/10.1002/pol.1982.180201014
  9. N. E. Franks and J. K. Varga, "Process for Making a Shapeable Cellulose and Shaped Cellulose Products", US Patent, 4,196,282(1980).
  10. M. Dube, "Spherulitic Precipitation of Cellulose from Amine-oxide Solution", J Polym Sci: Polym Lett, 1984, 22, 163-170. https://doi.org/10.1002/pol.1984.130220307
  11. B. Moon, S. Lim, T. Son, Y. Jeon, C. Yoon, and Y. Oh, "Study on the Preparation and Properties of Regenerated Cellulose Fibers from NMMO/Water/Cellulose", J Korean Fiber Soc, 1997, 34, 477-488.
  12. S. Kawabata, "The Standardization and Analysis of Hand Evaluation", 2nd Ed., The Textile Machinery Society of Japan, Osaka, 1980.
  13. S. Kawabata, "Development of a Device for Measuring Heat-moisture Transfer Properties of Apparel Fabrics", J Textile Machinery Soc Japan, 1984, 37, 38-49.
  14. S. Chun, S. Jo, W. Lee, and J. Kim, "The Effect of Water Contents on the Properties of Cellulose Fiber Spun from the Solutions of Cellulose/4-Methylmorpholine N-oxide/Water", J Korean Fiber Soc, 1992, 29, 420-428.