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Tytuł artykułu

Transport pary wodnej przez tekstylia odzieżowe. Część 2: Badania porównawcze metod wyznaczania wskaźników transportu pary wodnej przez tekstylia

Autorzy
Identyfikatory
Warianty tytułu
EN
Water vapour transport through clothing fabrics. Part II. The comparative tests of the methods of evaluation transport indicator through textiles
Języki publikacji
PL
Abstrakty
Rocznik
Tom
Strony
17--22
Opis fizyczny
Bibliogr. 33 poz., tab., rys.
Twórcy
  • Instytut Włókiennictwa w Łodzi
Bibliografia
  • 1. ASTM E 96-90 Standard test methods for water vapor transmission of materials.
  • 2. ASTM D 1518-77 Standard test method for thermal transmittance of textile materials between guarded hot-plate and cool atmosphere.
  • 3. Bames J. C., B. V. Holcombe: Moisture sorption and transport in clothing during wear Text. Res. J. vol. 66, nr 12, 777-786, (1996).
  • 4. BS 7209: 1990 Water vapour permeable apparel fabrics.
  • 5. Congalton D.: Heat and moisture transport through textiles and clothing enembles utilising the „Hohenstein" skin model, J. of Coated Fabrics, vol. 28, 183-196, (1999)
  • 6. Dolhan P.: A comparison of apparatus used to measure water vapour resistance, J. of Coated Fabrics, vol. 17, 96-109, (1987).
  • 7. ENV 343 Protective clothing - Protection against foul weather.
  • 8. Fanger P. O.: Komfort cieplny, Arkady, Warszawa 1974.
  • 9. Famworth B.: A numerical model of the combined diffusion of heat and water vapour through clothing, Text. Res. J. vol. 56, 653-665, (1986).
  • 10. Famworth B., W. A. Lotens, P. P. M. M. Wittgen: Variation of water vapor resistance of microporous and hydrophilic films with relative humidity, Text. Res. J. vol. 60, nr 1, 50-53, (1991)
  • 11. Finn J. T., A. J. G. Sagar: Effects of imposing a temperature gradient on moisture vapor transfer through water resistant breathable fabrics, Text. Res. J. vol. 70, nr 5, 460-466, (2000).
  • 12. Fukazawa T., H. Kawamura, T. Tamura: Water vapour resistance of hydrofobic microporous membranes under reduced pressures at a constant temperature, J. Text. Inst., part 1, nr 4, 602-615, (1999).
  • 13. Fukazawa T., H. Kawamura, T. Tamura: Water vapour transfer through microporous membranes and polyester textiles at combinations of temperature and pressure that simulate elevated altitudes, J. Text. Inst., part 1, nr 2, 434-447, (2000).
  • 14. Gibson P. W.: Factors influencing steady-state heat and water vapor transfer measurements for clothing materials, Text. Res. J. vol. 63, (12), 749-764, (1993).
  • 15. Gibson P. W.: Water vapor transport and gas flow properties of textiles, polymer, membranes and fabric laminates, J. of Coated Fabrics vol. 28, 300-327, (1999).
  • 16.Gohlke D. J., Improved analysis of comfort petfotmance in coated fabrics, J.of Coated Fabrics vol. 10, 209-224 (1981).
  • 17. Grettton J. C.: MVT - a continuing controversy, WSA nr 3, 34-39, (1997).
  • 18. Gretton J. C., B. B. Brook, H. M. Dyson, S. C. Harlock: A correlation between test methods used to measure moisture vapour transmission through fabrics, J. of Coat. Fab. vol. 25, 301-310, (1996).
  • 19. Gretton J. C., B. B.Brook, H. M. Dyson, S. C.Harlock: The measurement of moisture vapour transmission through simulated clothing systems, J. of Coated Fabrics vol. 26, 212-220, (1997).
  • 20. Gretton J. C., B. B. Brook, H. M. Dyson, S. C. Harlock: Moisture vapor transport through waterproof breathable fabrics and clothing systems under a temperature gradient, Text. Res. J. vol. 68, (12), 936-941, (1998).
  • 21. Holmes D. A.: Performance characteristics of waterproof breathable fabrics, J. of Coated Fabrics vol. 29, 306-316, (2000).
  • 22. ISO 11092 Textiles - Physiological effects - Measurement of thermal and water vapour resistance under steady-state conditions (sweating guarded hot plate test), 1993.
  • 23. Kim J. G.: „Dynamic moisture vapor transfer through textiles Part III Effect of film characteristics on microclimate moisture and temperature changes" Text. Res. J. vol. 69, (3), 193-202, (1999).
  • 24. Lomax G. R.: „Hydrophilic polyurethane coatings" J. of Coated Fabrics vol. 20, 88-107, (1990).
  • 25. PN-P-04611:1971 Tekstylia. Wyznaczanie przepuszczalności pary wodnej.
  • 26.Osczevski R. J.: Water vapor transfer through a hydrophilic film at subzero temperatures Text. Res. J. vol. 66, (1), 24-29, (1996).
  • 27. Rossi R.: New test method for the assesment of the comfort in protective clothing 36-th International Man-Made Fibres Congress, Dorbirn/Austria 17-19.09.1997.
  • 28. Ruckman J. E.: An analysis of simultaneous hest and water vapor transfer through waterproof breathable fabrics, J. of Coated Fabrics vol. 26, April 1997, 293-307.
  • 29. Wang J. H., Yasuda H.: Dynamic water vapour and heat transport through layered fabrics. Part I: Effect of surface modification, Text. Res. J. vol. 61, nr 10, (1991).
  • 30. Watkins D. A., Slater K.: The moisture vapour permeability of textile fabrics, J. Text. Inst., nr 1, 11-18, (1981).
  • 31. Weder M. S., Zimmerli T., Rossi R. M.: A sweating and moving arm for the measurement of thermal insulation and water vapour resistance of clothing. Performance of Protective Clothing: 5-th Vol., ASTM STP 1237, ASTM, Philadelphia, 1995.
  • 32. Wehner J. A., Miller B., L. Rebenfeld; Dynamics of water vapor transmission through fabric barriers, Text. Res. J. vol. 58, nr 10, 581-592, (1988).
  • 33. Yasuda T., M. Miyama, H. Yasuda: Dynamic water vapour and heat transport through layered fabrics Part II: Effect of of the chemical nature of fibers, Text. Res. J. vol. 61, (4), 227-235, (1992).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS2-0014-0020
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