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Predictive models for strength of spun yarns: an overview

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Over the past century or so, determining the predictive models of yarn strength has been the subject of a number of investigations, because yarn strength is a principle component of yarn quality. The aim of these models is to enable the yarn strength to be predicted from the properties of its component fibres as well as other parameters. The development of predictive modelling of yarn strength is always significant both in theory and in practice. In this article, a review of various predictive models of yarn strength is presented.
Rocznik
Strony
20--29
Opis fizyczny
Bibliogr. 38 poz.
Twórcy
autor
  • Department of Textile Technology Indian Institute of Technology Delhi, Hauz Khas, New Delhi-110016, India
autor
  • Department of Textile Technology Indian Institute of Technology Delhi, Hauz Khas, New Delhi-110016, India
autor
  • Department of Textile Technology Indian Institute of Technology Delhi, Hauz Khas, New Delhi-110016, India
autor
  • Department of Textile Technology Indian Institute of Technology Delhi, Hauz Khas, New Delhi-110016, India
autor
  • Department of Textile Technology Indian Institute of Technology Delhi, Hauz Khas, New Delhi-110016, India
Bibliografia
  • 1. Hearle, J. W. S., Grosberg, P., and Backer, S., 'Structural Mechanics of Fibres, Yarns and Fabrics,' Wiley-Interscience, New York, 1969.
  • 2. Zurek, W.,'The Structure of Yarn,' Warsaw, Poland, 1975.
  • 3. Postle, R., Caranby, G. A. and de Jong, S., 'The Mechanics of Wool Structure,' John Willy & Sons, New York, 1988.
  • 4. Langenhove, L. V., ‘Simulating the Mechanical Properties of a Yarn Based on the Properties and Arrangement of its Fibres, Part I: The Finite Element Model,’ Text. Res. J., 67,263-268, 1997.
  • 5. Gegauff, C., 'Strength and Elasticity of Cotton Threads.' Bull. Soc. Ind. Mulhouse, 77, 153-176, 1907.
  • 6. Gurney, H. P., ‘The distribution of stress in cotton products,' J. Textile Inst., 16, T269-289, 1925.
  • 7. Sullivan, R. R., 'A Theoretical Approach to the Problem of Yarn Strength,’ J. Appl. Phys., 13, 157, 1942.
  • 8. Gregory, J., 'Cotton Yarn Structure, Part III: The Strength of Artificial Yarn Elements in Relation to Bulk and Yarn Twist,' J. Textile Inst., 41, T30-52, 1950.
  • 9. Pan, N., 'Development of a Constitutive Theory for Short Fibre Yarns, Part I: Mechanics of Staple Yarn Without Slippage Effect,' Text. Res. J. 62, 749-765, 1992.
  • 10. Pan, N., 'Development of a Constitutive Theory for Short Fibre Yarns, Part II: Mechanics of Staple Yarn With Slippage Effect,' Text. Res. J. 63, 504-515, 1993.
  • 11. Pan, N., 'Development of a Constitutive Theory for Short Fibre Yarns, Part III: Effects of Fibre Orientation and Bending Deformation,' Text. Res. J. 63, 565-572, 1993.
  • 12. Bogdan, J. E., 'The Characterization of Spinning Quality,' Text. Res. J., 720-730,1956.
  • 13. Bogdan, J. E., 'The Prediction of Cotton Yarn Strength,' Text. Res. J., 536-537, 1967.
  • 14. Subramanian, T. A., Ganesh, K. and Bandyopadhyay, S., 'A Generalized Equation for Predicting the Lea Strength of Ring-Spun Cotton Yarns,' J. Text. Inst., 65, 307-313, 1974.
  • 15. Lord,E., 'The Characteristics of Raw Cotton, Manual of Cotton Spinning, Vol. II, Part 1,' Manchester, 1961.
  • 16. Neelkantan, P., Subramanian, T. A., 'An Attempt to Quantify the Translation of Fibre Bundle Tenacity into Yarn Tenacity,' Text. Res. J., 46,822-827,1976.
  • 17. Solovev, A. N., 'Proektirovanie svoistv pryazhi v khlopchatobumazhnom proizvodstve (The Prediction of Yarn Properties in Cotton Processing),' Moskva, 1958.
  • 18. Usenko, V. A., 'Ispolzovanie shtapelnogo volokna v pryadenii (The Use of Staple Fibres in Spinning),' Moskva, 1958.
  • 19. Fredrych, I., 'A New Approach for Predicting Strength Properties of Yarn,' Text. Res. J., 62, 340-348, 1992.
  • 20. Martindale, J. G.,'A New Method of Measuring the Irregularity of Yarns with Some Observations on the Origin of Irregularities in Worsted Slivers and Yarns, J. Textile Inst., 36, T35-47, 1945
  • 21. Zurek, W., Fredrych, I., Zakrzewski, S., 'A Method of Predicting the Strength and Breaking Strain of Cotton Yarn,' Text. Res. J., 439-444, 1987.
  • 22. Ghosh, A., Ishtiaque, S. M., and Rengasamy, R. S., 'A Generalized Mathematical Approach to Predict the Strength of Different Spun Yarns,' proceedings of The 5th International Conference: TEXTILE SCIENCE 03, Technical University Liberec, Czeck republic, pp 321-322, 2003.
  • 23. Krause, H. W. and Soliman, H. A., 'Theoretical study of the Strength of Single Jet False Twist Spun Yarns,' Text. Res. J., 60, 309-318, 1990.
  • 24. Rajamanickam, R., Hansen, S. M., and Jayaraman, S., 'A Model for the Tensile Fracture Behaviour of Air-jet Spun Yarns,' Text. Res. J., 68, 654-662,1998.
  • 25. Pan, N., 'Prediction of Statistical Yarn Strength of Twisted Fibre Structure,' J. Mater. Sci., 28, 6107, 1993.
  • 26. Pan, N., Hua, T., and Qiu, Y., 'Relationship between Fibre and Yarn Strength, Textile Res. J. 71, 960-964, 2001.
  • 27. Iyengar, R. L. N., and Gupta, A. K., 'Proportion of Fibre Strength Utilized in the Single Yarn,' Text. Res. J., 489-492, 1974.
  • 28. Iyengar, R. L. N., and Gupta, A. K., 'Some Functions Involving Fibre Properties for Estimating Yarn Tenacity,' Text. Res. J., 492-494, 1974.
  • 29. Mogahzy,Y. E. E., ‘Selecting Cotton Fibre Properties for Fitting Reliable Equations to HVI data,’ Textile Res. J. 58, (7) 392-397, 1988.
  • 30. Hafez, O. M. A., 'Yarn strength Prediction of American Cotton, Textile Res. J. 68, 701-705, 1978.
  • 31. Hunter, L. and Gee, E., Melliand Textilber, 'Correlation between Cotton Fibre Properties and Ring and Rotor Yarn Properties,' 64, 398-401, 1982.
  • 32. Ethridge, M. D., Towery, J. D., and Hembree, J. F., 'Estimating Functional Relationship Between Fibre Properties and the Strength of Open-End Spun Yarns,' Text. Res. J., 35-44, 1982.
  • 33. Ramey Jr. H. H., Lawson, R. and Worley Jr., S., 'Relationship of Cotton Fibre Properties to Yarn Tenacity,' Text. Res. J., 685-691, 1977.
  • 34. Swiech, T., 'Influence of Fibre Properties on the Strength of Rotor Spun Yarn,’ Melliand Textilber, 68, 874-877, 1987.
  • 35. Chasmawala, R. J., Hansen, S. M., and Jayaraman, S., 'Structure and Properties of Air-Jet Spun Yarn' Text. Res. J., 60, 61-69, 1990.
  • 36. Brown, H. M., 'Correlation of Yarn Strength with Fibre Strength Measured at Different Gage Length,' Text. Res. J., 24, 251-260, 1954.
  • 37. Garde, A. R., and Subramanian, T. A. 'Process Control in Spinning,' ATIRA Silver Jubilee Monograph, Ahmedabad, 1978.
  • 38. Tallent, J. D., Fiori, L. A., Little, H. W., and Castillon, A. V., 'Investigation of the Minimum Length of Cotton Fibre Effective in Single Yarn Tenacity,' Text. Res. J. 1005-1012,1963.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-aca14074-03c0-4605-aae0-a400b4ee5404
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