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Structural design engineering of woven fabric by soft computing: part II - non-plain weave

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The maximum weavability limit is predicted by extending Peirce's geometrical model for non-plain weaves for circular and racetrack cross-sections by soft computing. This information is helpful to weavers in that attempts to weave impossible constructions can be avoided, thus saving time and money. It also helps in anticipating difficulties in weaving and in taking the necessary steps in warp preparation. The relationship between the cover factors in the warp and weft directions is demonstrated for circular and racetrack cross-sections for plain, twill, basket and satin weave. Non-plain weave fabric affords further flexibility for increasing fabric mass and fabric cover. As such, they enlarge the scope of the fabric designer.
Rocznik
Strony
42--46
Opis fizyczny
Bibliogr. 17 poz.
Twórcy
autor
  • Faculty of Textile Engineering, Technical University of Liberec, Czech Republic
  • Faculty of Textile Engineering, Technical University of Liberec, Czech Republic
autor
  • Department of Textile Technology, Indian Institute of Technology Delhi, India
autor
  • Faculty of Textile Engineering, Technical University of Liberec, Czech Republic
Bibliografia
  • 1. F. T. Peirce, J. Text. Inst., 28, 3 (1937).
  • 2. A. Kemp, J. Text. Inst., 49, 1 (1958).
  • 3. J. W. S. Hearle and J. Amirbayat, J. Text. Inst., 79, 4 (1988).
  • 4. P. Grosberg and S. Kedia, Text. Res. J., 36, 1 (1966).
  • 5. S. Backer, Text. Res. J., 22, 10 (1952).
  • 6. R. Postle, G. A. Carnaby and De S. Jong, “The Mechanics of Wool Structures”, pp.307-365, Halsted Press New York, 1988.
  • 7. J. Lindberg, B. Behre and B. Dahlberg, Text. Res. J., 31, 2 (1961).
  • 8. S. Kawabata, R. Postle and M. Niwa, “Objective Specification of Fabric Quality , Mechanical Properties and Performance”, The Textile Machinery Society of Japan, 1982.
  • 9. N. G. Ly , D. H. Tester , P . Buckenham, A. F . Roczniok, A. L. Adriaansen, F . Scaysbrook and De S. Jong, Text. Res. J., 61, 7 (1991).
  • 10. J. Hu, “Structure and Mechanics of Woven Fabrics”, pp.91- 186, Woodhead Publishing Limited, Great Abington, 2004.
  • 11. http://www.i-designer.co.kr, i-Designer.
  • 12. http://www .texclub.com, Texpro.
  • 13. T. Harada and M. Saito, Sen-I Gakkaishi, 45, 305 (1986).
  • 14. S. J. Kim, “Proceedings of 2nd International Fibre Symposium in Fukui”, p.10, Japan, 2002.
  • 15. S. J. Kim, “Proceedings of 3rd International Conference on Advanced Fibre/Textile Materials in Ueda”, p.32, Jap an, 2005.
  • 16. J. B. Dickson, “Practical Loom Experience on Weavability Limits”, Textile Research Journal, 24, No. 12, 1083 (1954).
  • 17. A. M. Seyam, “The Structural Design of Woven Fabrics: Theory and Practice”, Textile Progress, 31, No. 3 (2003).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-2353a1a4-121a-4652-94ff-86f1545295c0
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