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Tytuł artykułu

Volume porosity and permeability in double-layer woven fabrics

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Clothing for garments is designed to meet both the safety and the comfort of human beings. Porosity is considered to be one of the basic features representing a textile structure. The properties of fabrics were analyzed by determining the efficiency of fabric porosity. The woven fabric multi-layer structure, the warp and weft densities, and the type of weave are factors of a woven fabric, which as porous material enables to transmit air, heat energy, and liquid perspiration. Several methods considering thread distributions have been developed to determine the woven fabric’s porosity. A mathematical model based on an ideal geometry of the porous structure of a multi-layer woven fabric has been developed.
Rocznik
Strony
208--219
Opis fizyczny
Bibliogr. 17 poz.
Twórcy
  • Faculty of Specific Education, Kafer ElSheikh, Tanta University, Egypt
Bibliografia
  • 1. Gee N.C.; “Cloth Setting and Setting Theories”, Text. Manufacturer. , Vol. 80, 381 (1953).
  • 2. Peirce F.T., and Womersley F.T., “Cloth Geometry” ;Text. Institute, Manchester, England. (1937) and (1978).
  • 3. Love L.; “Graphical Relationships in Cloth Geometry for Plain, Twill and Sateen Weaves”; Text. R. J. vol.24, (1954) ,pp.1073-1083.
  • 4. Kemp A.; “An Extension of Pierce's Cloth Geometry to the Treatment of Non-circular Threads”. J Text. Inst., vol.( 49),(1958) ,pp.44-49.
  • 5. Hamilton J.B.; “A General System of Woven-Fabric Geometry”. J Text. Inst., Vol. 55, (1964). ,pp. 66-82.
  • 6. Weiner L.I.; ”Textile Fabric Design Tables” . Technomatic Publishing Co., Inc., Stamford, CN. (1971).
  • 7. Seyam A., and El-Shiekh.A.; “Mechanics of Woven Fabrics” . Part III: Critical Review of Weability Limit Studies. Text. R. J., Vol. 63, (1993). ,pp. 371-378.
  • 8. M. Kienbaum; “Gewebegeometrie und Produktentwicklung”. Melliand Textilberichte., Vol. 71, 737. (1990).
  • 9. Jakšić.D.; “The Development of the new Method to determine the Pore Size and Pore Size Distribution in Textile Products”. Part I., Faculty of Natural Sciences and Technology, Department of Textile Technology, Ljubljana, Slovenia. (1975).
  • 10. Dimitrovski K.; “New Method for determination of Porosity in Textiles”. Faculty of Natural Sciences and Technology, Department of Textile Technology, Ljubljana, Slovenia, (1996).
  • 11. Gooijer.H,; “Flow resistance of textile materials”, 1998.
  • 12. Szosland J., ‘Air Permeability of Woven Multilayer Composite Textiles’, Fibres & Textiles in Eastern Europe, vol.7, No,1 (24), 1999, pp.34-37.
  • 13. Szosland J., ‘Identification of Structure of Inter-thread Channels in Models of Eoven Fabrics’, Fibres & Textiles in Eastern Europe, vol.7, No,2 (25), 1999, pp.41-45
  • 14. Szosland J., “Modelling the Structural Barrier Ability of Woven Fabrics”, AUTEX Research Journal, Vol. 3, No3, September 2003, pp.102-110.
  • 15. Darcy H. L.; “Fontaines Publiques de la Villa de Dijon. Dalmount”. (1956).
  • 16. Elnashar E.A.;“Effect of Warp-ends Densities Distribution on Some A esthetical and Physical Properties of Multi-layer Woven Fabrics”, Msc Thesis, Faculty of Applied arts. Helwan university Egypt. (1995).
  • 17. A.S.T.M. Annual Book;“Standards, Textiles-Yarn-Fabric General Test Methods”-part, 22. (1981).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-96a0aab5-6f2b-44d0-9a95-dbc08986f1ff
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