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Original Articles

The Effect of Testing Speed on the Hairiness of Ring-spun and Sirospun Yarns

Pages 99-106 | Received 21 Dec 1995, Accepted 28 Feb 1996, Published online: 30 Mar 2009

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (8)

Noman Haleem & Xungai Wang. (2013) A comparative study on yarn hairiness results from manual test and two commercial hairiness metres. The Journal of The Textile Institute 104:5, pages 494-501.
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Zhigang Xia & Weilin Xu. (2013) A Review of Ring Staple Yarn Spinning Method Development and Its Trend Prediction. Journal of Natural Fibers 10:1, pages 62-81.
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YasarA. Ozkaya, Memis Acar & MikeR. Jackson. (2008) Simulation of photosensor-based hairiness measurement using digital image analysis. The Journal of The Textile Institute 99:2, pages 93-100.
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A. Barella & A.M. Manich. (2002) YARN HAIRINESS: A FURTHER UPDATE. Textile Progress 31:4, pages 1-44.
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A. Barella & A.M. Manich. (1998) The Effect of Testing Speed on the Hairiness of Ring-spun and Sirospun Yarns. The Journal of The Textile Institute 89:3, pages 605-607.
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R.J. Harwood, L. Norton-Wayne & R.A. Campbell. (1998) Inspecting the Back of Woven Carpets for Pattern Distortion. The Journal of The Textile Institute 89:2, pages 381-389.
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X. Wang. (1998) Measuring the Hairiness of a Rotor-spun Yarn on the Uster Tester 3 at Different Speeds. The Journal of The Textile Institute 89:2, pages 281-288.
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X. Wang. (1998) Testing the Hairiness of a Rotor-spun Yarn on the Zweigle G565 Hairiness Meter at Different Speeds. The Journal of The Textile Institute 89:1, pages 167-169.
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Articles from other publishers (19)

Abdurrahman TELLİ. (2023) Seçilmiş İpliklerde Zweigle İplik Tüylülüğü Sonuçlarına Farklı Test Hızlarının EtkisiThe Effect of Different Test Speed on Zweigle Yarn Hairiness Results in Selected Yarns. Çukurova Üniversitesi Mühendislik Fakültesi Dergisi 38:1, pages 131-142.
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Zhigang Xia, Xin Liu, KeZuo Wang, Bo Deng & Weilin Xu. (2019) A novel analysis of spun yarn hairiness inside limited two-dimensional space. Textile Research Journal 89:21-22, pages 4710-4716.
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Zhigang Xia, Hui Wu, Minghui Fu, Wenxiang Ye & Weilin Xu. (2016) A study on the impact of hair wrappings on yarn properties – Part I: Theoretical analysis and manual experimental validations. Textile Research Journal 87:15, pages 1912-1921.
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Noman Haleem & Xungai Wang. (2014) Recent research and developments on yarn hairiness. Textile Research Journal 85:2, pages 211-224.
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XX Huang, XM Tao & BG Xu. (2014) A theoretical model of maximum hairiness of staple ring-spun yarns. Textile Research Journal 84:11, pages 1121-1137.
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Mukesh Kumar Singh. 2014. Industrial Practices in Weaving Preparatory. Industrial Practices in Weaving Preparatory 134 266 .
Demet Yilmaz & Mustafa Reşit Usal. (2013) Improvement in yarn hairiness by the siro-jet spinning method. Textile Research Journal 83:10, pages 1081-1100.
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Bo Zhao. 2013. Proceedings of the International Conference on Information Engineering and Applications (IEA) 2012. Proceedings of the International Conference on Information Engineering and Applications (IEA) 2012 487 494 .
Bo Zhao. (2012) Applications of Neural Networks in the Hairiness of Ring Spinning Polyester/Cotton Yarn Prediction. Advanced Materials Research 549, pages 1055-1059.
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Zhigang Xia, Xin Wang, Juan Huang, Yan Wang, Wenxiang Ye & Weilin Xu. (2011) A study of influence of the delivery rubber roller on yarn properties. Textile Research Journal 81:14, pages 1477-1483.
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Zhao Bo. 2012. Advances in Multimedia, Software Engineering and Computing Vol.1. Advances in Multimedia, Software Engineering and Computing Vol.1 97 103 .
Zhao Bo. (2010) Prediction of Hairiness of Polyester/Viscose/Cotton Blended Ring Spinning Yarn. Prediction of Hairiness of Polyester/Viscose/Cotton Blended Ring Spinning Yarn.
Bo Zhao. (2010) Predicting the Hairiness of Ring Spinning Polyester/Cotton Yarn Using Multiple Regression and Artificial Neural Network Approaches. Predicting the Hairiness of Ring Spinning Polyester/Cotton Yarn Using Multiple Regression and Artificial Neural Network Approaches.
A. Majumdar. 2010. Technical Textile Yarns. Technical Textile Yarns 112 139 .
Zheng-Xue Tang, Xungai WangLijing Wang & W. Barrie Fraser. (2016) The Effect of Yarn Hairiness on Air Drag in Ring Spinning. Textile Research Journal 76:7, pages 559-566.
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Xungai WangLingli Chang & Bruce McGregor. (2016) The Hairiness of Worsted Wool and Cashmere Yarns and the Impact of Fiber Curvature on Hairiness. Textile Research Journal 76:4, pages 281-287.
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Lingli Chang, Zheng-Xue Tang & Xungai Wang. (2016) Effect of Yarn Hairiness on Energy Consumption in Rotating a Ring-Spun Yarn Package. Textile Research Journal 73:11, pages 949-954.
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Lingli Chang & Xungai Wang. (2016) Comparing the Hairiness of Solospun and Ring Spun Worsted Yarns. Textile Research Journal 73:7, pages 640-644.
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Xungai Wang & Lingli Chang. (2016) An Experimental Study of the Effect of Test Speed on Yarn Hairiness. Textile Research Journal 69:1, pages 25-29.
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