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Original Articles

2—THE MECHANICS OF STAPLE-FIBRE YARNS PART I: MODELLING ASSUMPTIONS

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Pages 11-18 | Received 09 Aug 1983, Accepted 08 Sep 1983, Published online: 01 Dec 2008

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Read on this site (3)

M.C. Ramesh, R. Rajamanickam & S. Jayaraman. (1995) The Prediction of Yarn Tensile Properties by Using Artificial Neural Networks. The Journal of The Textile Institute 86:3, pages 459-469.
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K.H. Elliott, G.A. Carnaby & J.B. Dent. (1987) A Computer Model for Simulating the Semi-worsted Processing of Wool. The Journal of The Textile Institute 78:5, pages 392-421.
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G.A. Carnaby & J.I. Curiskis. (1987) The Tangent Compliance of Staple-fibre Bundles in Tension. The Journal of The Textile Institute 78:4, pages 293-305.
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Articles from other publishers (14)

F. Trochu, N. Vernet, Y. Sun, J. Echaabi, A. Makradi & S. Belouettar. (2022) Hybrid twin models of fiber compaction for composite manufacturing based on dual kriging. International Journal of Material Forming 15:3.
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Hanen Ghanmi, Adel Ghith & Tarek Benameur. (2015) Response Surface Regression Models for Prediction of Ring Spun Yarn Properties. Research Journal of Textile and Apparel 19:4, pages 1-10.
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Arkady Cherkassky & Eugene Bumagin. (2014) A Combined Discrete Event, Agent - Based Approach to Modeling the Tensile Strength of One - Dimensional Fibrous Materials. Journal of Engineered Fibers and Fabrics 9:4, pages 155892501400900.
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S. Grishanov. 2014. High Performance Textiles and their Applications. High Performance Textiles and their Applications 1 69 .
I. Maatouk, S. Msahli, M. Zidi & F. Sakli. (2010) Three Dimensional Numerical Study of Contact and Inner Pressures in a Polypropylene Twisted Yarn. Journal of Applied Sciences 10:14, pages 1442-1448.
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N Mardani Mehrabad, M Safar Johari & M M Aghdam. (2010) Finite-element and multivariate analyses of tension distribution and spinning parameter effects on a ring-spinning balloon. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 224:2, pages 253-258.
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S. Grishanov. 2010. Modelling and Predicting Textile Behaviour. Modelling and Predicting Textile Behaviour 41 111 .
R. Ognjanovic. 2010. Modelling and Predicting Textile Behaviour. Modelling and Predicting Textile Behaviour 112 143 .
Guangsong Yan & Chongwen Yu. (2007) A joint influence of the distributions of fiber length and fineness on the strength efficiency of the fibers in yarn. Fibers and Polymers 8:3, pages 309-312.
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T. Liu, K.F. ChoiY. Li. (2016) Mechanical Modeling of Singles Yarn. Textile Research Journal 77:3, pages 123-130.
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Mishu ZeidmanPaul S. Sawhney. (2016) Influence of Fiber Length Distribution on Strength Efficiency of Fibers in Yarn. Textile Research Journal 72:3, pages 216-220.
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Takashi Komori. (2016) A Generalized Micromechanics of Continuous-Filament Yarns. Part I: Underlying Formalism. Textile Research Journal 71:10, pages 898-904.
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Emel Önder & Güngör Baser. (2016) A Comprehensive Stress and Breakage Analysis of Staple Fiber Yarns. Textile Research Journal 66:9, pages 562-575.
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R. G. Djaja, P. J. Moss, A. J. Carr, G. A. Carnaby & D. H. Lee. (1992) Finite Element Modeling of an Oriented Assembly of Continuous Fibers. Textile Research Journal 62:8, pages 445-457.
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