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Studies on frictional behaviour of chitosan-coated fabrics

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Anti-microbial finishing has been an area of constant interest for processors. In this paper, we carried out studies into the frictional behaviour of the chitosan-coated fabrics. With the increase in chitosan concentration, a decrease in frictional constant values is observed. Test parameters such as normal load and area of contact are bound to affect the frictional values. With an increase in normal load, a decrease in frictional values is observed; and with an increase in the area of contact, a decrease in frictional values is observed.
Rocznik
Strony
216--222
Opis fizyczny
Bibliogr. 15 poz.
Twórcy
autor
  • Department of Textile Technology, A C College of Technology, Anna University, Chennai 600 025, India Phone: + 91-44-22203561
  • Department of Textile Technology, A C College of Technology, Anna University, Chennai 600 025, India Phone: + 91-44-22203561
  • Department of Textile Technology, A C College of Technology, Anna University, Chennai 600 025, India Phone: + 91-44-22203561
  • Department of Textile Technology, Jaya Engineering College, Chennai 600 025, India
Bibliografia
  • 1. Morton, W.E. and Hearle, J.W.S. (1975). Physical Properties of Textile Fibres, 2nd ed. The Textile Institute, Manchester, 612.
  • 2. Bowden, F.P. and Tabor, D. (1950). The Friction and Lubrication of Solids, Oxford, London.
  • 3. Tabor, D. (1974). Friction, ‘Adhesion and Boundary Lubrication of Polymers’, in Advances in Polymer Friction and Wear,, Plenum Press, NY, 54: 5-28.
  • 4. Shin,Y.,Yoo.D.I and Jang. J.(2001). ‘Molecular weight effect on anti-microbial activity of chitosan treated cotton fabrics.’ Journal of Applied Polymer Science, vol. 80, 2495-2501.
  • 5. Seong., Jae-PH ., Kim and] Won Ko.(1999). ‘Preparing chito-oligosaccharides as antimicrobial agents for cotton’, Textile Res.J.69(7), 483-488
  • 6. John A Rippon (1984). ‘Improving the dye coverage of immature cotton fibres by treatment with chitosan’, JSDC ,Vol 100, 298-310
  • 7. Jeong. Y.J,, Cha S.Y., Yu W.R. and Park W.H. ‘Change in the mechanical properties of chitosan-treated wool fabric’ (2002), Textile Res.J. 72(1),70-76.
  • 8. SeungSin Lee, Jeong-Sook Cho and Gilsoo Cho (1999). ‘Antimicrobial and blood repellent finishes for cotton and non-woven fabrics based on chitosan and fluoro-polymers’, Textile Res.J.69(2) ,104-112
  • 9. Ajayi, J.O. (1992). ‘Fabric smoothness, friction and handle’, Textile Res. J., 62: 52-59.
  • 10. Nachane, R.P., Hussain, G.F.S and Iyer, K.R.K. (1998). [*] fibres, Indian J Fibre Text Res. 23:150-155.
  • 11. Ramkumar, S. S., Leaf, G. A. V., and Harlock, S. C., (2000). ‘A study of the frictional properties of 1x1 rib knitted cotton fabrics’, J. Text. Inst., 91, Part 1, No. 3, 374-382.
  • 12. Ramkumar, S. S., (2002), ‘Frictional characterisation of enzyme-treated fabrics’. AATCC Review, pp. 24-27.
  • 13. Lord, E., ‘Frictional forces between fringes of fibres’, J.Text.Inst,(1955), pp41-59.
  • 14. Viswanathan, A. (1966), ‘Frictional forces in cotton and regenerated cellulosic fibres’. Journal of Text. Inst., pp. T30-T41.
  • 15. Wilson, D., (1963), ‘Study of fabric-on-.fabric Dynamic Friction’, Journal of Text. Inst,, 54: pp. T143-T155.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c1e567a8-b7e1-48e4-a803-9da289b59453
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