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Tytuł artykułu

Optimisation of the behaviour of sized wet spliced yarns

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This work presents the contribution of optimisation analysis of the performance of wet pneumatic spliced cotton yarns using two different methods: the superimposed contours method and the function of desirability. Cotton yarn linear density (Yc), length of splice (SL), duration of water joining (Dwj) and duration of air joining (Daj) were optimised in the experimental field of interest. In this study regression equations expressing multi-component splice mechanical performances were elaborated by using the response surface method. In order to validate the results, a desirability function, multi-objective technique was used to select optimal parameter zones which give high splice behaviour. The results show that there are zones of compromise where wet pneumatic splice behaves better before weaving. In this work, the spliced yarn performance was optimised.
Rocznik
Strony
1--4
Opis fizyczny
Bibliogr. 14 poz., wykr.
Twórcy
autor
  • Textile Research Unit of ISET K-H, Tunisia B.P 68 Ksar Hellal 5070, Tunisia
  • Textile Research Unit of ISET K-H, Tunisia B.P 68 Ksar Hellal 5070, Tunisia
autor
  • Textile Research Unit of ISET K-H, Tunisia B.P 68 Ksar Hellal 5070, Tunisia
Bibliografia
  • 1. B. Jaouachi, M. Ben Hassen, and F. Sakli, Strength of wet spliced denim yarns after sizing using a central composite design, AUTEX Research Journal, Vol. 7, No. 3, pp. 159–165, Sept. 2007.
  • 2. M. Ben Hassen, B. Jaouachi, M. Sahnoun, and F. Sakli, Contribution to the study of mechanical properties and appearance of wet spliced core-spun denim yarns, Journal of Textile Institute, Vol. 99, No. 2, pp. 119–123, 2007.
  • 3. S. Kovacevic, and Z. Penava, Impact of sizing on physico-mechanical properties, Fiber & Textile in Eastern Europe, Vol. 12, No. 4 (48), pp, 32–36, Oct.–Dec. 2004.
  • 4. K.P.S. Cheng and H.L.I. Lam, Evaluating and comparing the physical properties of spliced yarns by regression and neural network techniques, Textile Research Journal, Vol. 73, No. 2, pp. 161–164, Feb. 2003.
  • 5. K.P.S. Cheng and H.L.I. Lam, Strength of pneumatic spliced polyester/cotton ring spun yarns, Textile Research Journal, Vol. 70, No. 3, pp, 243–246, Mar. 2000.
  • 6. R.C.D. Kaushik and I.C. Sharma, Effect of fiber/yarn variables on mechanical properties of spliced yarn, Textile Research Journal, Vol. 57, No. 8, pp. 490–494, Aug. 1987.
  • 7. R.C.D. Kaushik, P.K. Hari, and I.C. Sharma, Quantitative contribution of splice elements, Textile Research Journal, Vol. 58, No. 6, pp. 343–344, Jun. 1988.
  • 8. P.E. Exbrayat, A future way to sizing taking account of new spinning and weaving technologies, Melliand Textilberichte, Vol. 73, No. 1, pp. 28–32, 1992.
  • 9. S.D. Slaausson, B. Miller, and L. Rebenfeld, Physicohemical properties of sized yarns, Part I: Initial Studies, Textile Research Journal, pp. 655–664, 1984.
  • 10. R.D. Anandjiwala, M. Carmical, and B.C. Goswami, Tensile properties and static fatigue behavior of cotton warp yarns, Textile Research Journal, Vol. 65, No. 3, pp. 131–149,1995.
  • 11. H.L. Friedman, Y.Y. Zhou, and B. Miller, Development ofhairiness of sized warp yarns during flexabrasive wear, Textile Research Journal. Vol. 59, No. 2, pp. 495–500, 1989.
  • 12. R.D. Anandjiwala, M. Carmical, and B.C. Goswami, Tensile properties and static behaviour of cotton warp yarns, Textile Research Journal, Vol. 65, No. 3, pp. 131–149, 1995.
  • 13. J.A. Cornell, Experiments with mixtures: designs, models, and the analysis of mixture data, John Wiley & Sons, 1990.
  • 14. G.F. Koons, and M.H. Wilt, Design and analysis of an ABS pipe compound experiment. In: R.D. Snee, L.B. Hare, and R. Trout (editors), Experiments in industry: design, analysis, and interpretation of results, pp. 111–117. American Society for Quality Control, Milwaukee, 1985.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c12902ba-d6ad-4d92-8215-9a5301e92e2c
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