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Original Articles

YARN HAIRINESS

Pages 1-57 | Published online: 13 Jan 2009

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

Read on this site (34)

Zhigang Xia, Mian Zhou, Hongshan Wang, Kezuo Wang & Youshun Wan. (2022) Evaluating the surface hairiness of woven fabric belts with a yarn hairiness tester. The Journal of The Textile Institute 113:1, pages 116-124.
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Daiqi Li, Bin Tang, Jianqiang Li & Guangming Cai. (2021) Application of Heat Treatment for Coloration and Hairiness Reduction of Wool Yarns. Journal of Natural Fibers 18:11, pages 1545-1555.
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Junfeng Jing, Mengying Huang, Pengfei Li & Xiaocui Ning. (2018) Automatic measurement of yarn hairiness based on the improved MRMRF segmentation algorithm. The Journal of The Textile Institute 109:6, pages 740-749.
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Yinyin Sun, Zhongjian Li, Ruru Pan, Jian Zhou & Weidong Gao. (2017) Measurement of long yarn hair based on hairiness segmentation and hairiness tracking. The Journal of The Textile Institute 108:7, pages 1271-1279.
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Gabriela Krupincová, Bohuslav Neckář & Dipayan Das. (2016) Hairiness of staple fiber yarns Part II: model validation. The Journal of The Textile Institute 107:3, pages 338-345.
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Bohuslav Neckář, Dipayan Das & Gabriela Krupincová. (2016) Hairiness of staple fiber yarns part I: mathematical modeling. The Journal of The Textile Institute 107:3, pages 327-337.
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D.J. Cottle & B.P. Baxter. (2015) Wool metrology research and development to date. Textile Progress 47:3, pages 163-315.
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Sarmad Aslam, Peter R. Lamb & Xungai Wang. (2013) Improved incorporation of fibres for more abrasion resistant yarns. The Journal of The Textile Institute 104:11, pages 1221-1229.
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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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Anirban Guha, C. Amarnath, S. Pateria & R. Mittal. (2010) Measurement of yarn hairiness by digital image processing. The Journal of The Textile Institute 101:3, pages 214-222.
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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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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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A. Barella & A.M. Manich. (1998) A New Photoelectric Device for the Measurement of Yarn Diameter and Yarn Evenness. The Journal of The Textile Institute 89:4, pages 711-712.
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X. Wang. (1997) The Effect of Testing Speed on the Hairiness of Ring-spun and Sirospun Yarns. The Journal of The Textile Institute 88:2, pages 99-106.
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A. Barella. (1993) THE HAIRINESS OF YARNS. Textile Progress 24:3, pages 1-46.
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K. Slater. (1993) PHYSICAL TESTING AND QUALITY CONTROL. Textile Progress 23:1-3, pages 1-160.
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A. Barella & A.M. Manich. (1993) The Hair-length Distribution of Yarns, Measured by Means of the Zweigle G 565 Hairiness Meter. The Journal of The Textile Institute 84:3, pages 326-335.
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A.R. Kalyanaraman. (1992) A Process to Control Hairiness in Yarn. The Journal of The Textile Institute 83:3, pages 407-413.
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V. Subramaniam & A. Peer Mohamed. (1991) A Study of Double-rove Yarn Hairiness in the Short-staple-spinning Sector. The Journal of The Textile Institute 82:3, pages 333-340.
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A. Barella, X. Bardi & L. Castro. (1991) Yarn Attrition and Hairiness: A Yarn Self-rubbing Test. The Journal of The Textile Institute 82:1, pages 78-85.
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A. Barella, Alicia Egio, L. Castro & A.M. Manich. (1990) The Hairiness of Cotton-spun Yarns. The Effect of Fibre Properties on Measurements Made with the Zweigle G565 Hairiness Meter. The Journal of The Textile Institute 81:1, pages 86-88.
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A. Barella, P. A. Alvarez Vega & L. Castro. (1989) Yarn Attrition by Abrasion: A Comparison of Polyester-fibre/Cotton Blended-fibre Yarns Spun by Different Spinning Processes. The Journal of The Textile Institute 80:4, pages 599-603.
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A. Barella. (1988) A Review of the Recent Hairiness Literature. The Journal of The Textile Institute 79:2, pages 335-338.
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A. Barella. (1987) Yarn Hairiness: Further Developments. The Journal of The Textile Institute 78:2, pages 133-139.
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K. Köhler. (1986) Hairiness Testing of Continuous-filament Glass Yarns. The Journal of The Textile Institute 77:6, pages 416-418.
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A.M. Manich, A. Barella & Maria Dolores de Castellar. (1986) 34—A CONTRIBUTION TO THE STUDY OF THE INFLUENCE OF THE DESIGN OF THE YARN-WITHDRAWAL TUBE ON THE DIAMETER AND HAIRINESS OF OPEN-END-SPUN ACRYLIC-FIBRE YARNS. The Journal of The Textile Institute 77:6, pages 403-415.
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K. Slater. (1986) YARN EVENNESS. Textile Progress 14:3-4, pages 1-90.
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A. Barella. (1985) Progress in Yarn-hairiness Studies. The Journal of The Textile Institute 76:2, pages 127-132.
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Malik Yonis Hassan Saty, Bismark Sarkodie, Ibrahim Abdalla, Amjad Farooq, Ahmed Elhassan, Yong Wang & Zhenzhen Xu. (2024) Compact spinning: a comprehensive review of the revolution in yarn manufacturing. Textile Research Journal 94:7-8, pages 966-986.
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Alice Hazlehurst, Mark Sumner & Mark Taylor. (2024) Investigating the influence of yarn characteristics on microfibre release from knitted fabrics during laundering. Frontiers in Environmental Science 12.
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Md. Mahfuzur Rahman, Sheblee Ahmed, Rony Mia, Imon Biswas Shuva, Md. Moshiur Rahman, Md. Faysal Ahammed & Zhongmin Deng. (2022) CAD technology aided design and evaluation of performance parameters of warp knitted seamless garment. International Journal on Interactive Design and Manufacturing (IJIDeM) 17:2, pages 787-799.
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Aravin Prince Periyasamy & Ali Tehrani-Bagha. (2022) A review on microplastic emission from textile materials and its reduction techniques. Polymer Degradation and Stability 199, pages 109901.
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R. Rathinamoorthy & S. Raja BalasaraswathiR. Rathinamoorthy & S. Raja Balasaraswathi. 2022. Microfiber Pollution. Microfiber Pollution 69 105 .
İhsan Süle. (2020) Inspection and feature specification of the fancy yarns using diffraction limited incoherent imaging. Measurement 163, pages 107924.
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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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Gonca Balci Kilic & Ayşe Okur. (2018) Effect of yarn characteristics on surface properties of knitted fabrics. Textile Research Journal 89:12, pages 2476-2489.
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Marielis C. Zambrano, Joel J. Pawlak, Jesse Daystar, Mary Ankeny, Jay J. Cheng & Richard A. Venditti. (2019) Microfibers generated from the laundering of cotton, rayon and polyester based fabrics and their aquatic biodegradation. Marine Pollution Bulletin 142, pages 394-407.
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Brigita Kolčavová SirkováEva Moučková. (2018) Analysis Possibilities of Controlled Transport of Moisture in Woven Fabrics. Autex Research Journal 18:4, pages 385-391.
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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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Yinyin Sun, Ruru Pan, Jian Zhou & Weidong Gao. (2016) Analysis of detectable angles of yarn hairiness in optical measurements. Textile Research Journal 87:11, pages 1297-1307.
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Abdul Rehman Akbar, Muhammad Zeshan, Mohammad Neaz, Yingjie Cai & Lina Lin. (2017) Effect of Ring Machine Front Roller Rubber Cot Hardness on Properties of Coarser Yarn. MATEC Web of Conferences 130, pages 02003.
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Tomasz Blachowicz, Andrea Ehrmann & Krzysztof Domino. (2016) Statistical analysis of digital images of periodic fibrous structures using generalized Hurst exponent distributions. Physica A: Statistical Mechanics and its Applications 452, pages 167-177.
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Guo Ying, Feng Jie, Yin Rong, Wang Xungai, Marinus van der Sluijs & Tao Xiaoming. (2015) Investigation and evaluation on fine Upland cotton blend yarns made by the modified ring spinning system. Textile Research Journal 85:13, pages 1355-1366.
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Sibel Şardağ & Özcan Özdemir. (2014) Effects of vacuum steaming processes on the properties of continuous and staple polyester yarns. Textile Research Journal 85:12, pages 1247-1257.
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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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Jie Feng, Bingang Xu, Xiaoming Tao & Cheukwun Wong. (2014) Performance of cotton single yarns and knitted fabrics produced by a 2-step spinning method. Fibers and Polymers 15:4, pages 882-890.
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Heng Fang, Binjie Xin & Xiaoxia Liu. (2013) A Review of Yarn Appearance Evaluation Based on Image Analysis Technology. Research Journal of Textile and Apparel 17:4, pages 1-11.
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Abolfazl Mirdehghan, Siamak Saharkhiz & Hooshang Nosraty. (2013) Thermal Behavior of Worsted Fabrics Produced from Different Yarn Spinning Systems. Journal of Engineered Fibers and Fabrics 8:3, pages 155892501300800.
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Pei Zeguang, Chen Ge, Yang Jianping & Yu Chongwen. (2012) Computer simulation of the dynamics of the ramie yarn hair in the hairiness-reducing nozzle. Computer simulation of the dynamics of the ramie yarn hair in the hairiness-reducing nozzle.
Demet Yilmaz & Mustafa Resit Usal. (2012) Effect of Nozzle Structural Parameters on Hairiness of Compact-Jet Yarns. Journal of Engineered Fibers and Fabrics 7:2, pages 155892501200700.
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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. (2011) Applying artificial neural network technique and theory to study the hairiness of polyester/cotton blended yarn in warping process. Applying artificial neural network technique and theory to study the hairiness of polyester/cotton blended yarn in warping process.
Zhao Bo. (2011) Neural Network for Prediction of Hairiness of Ring Spun Cotton Yarn. Neural Network for Prediction of Hairiness of Ring Spun Cotton Yarn.
Tunák MarošBajzík Vladimír & Testik Murat Caner. (2011) Monitoring chenille yarn defects using image processing with control charts. Textile Research Journal 81:13, pages 1344-1353.
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V. Carvalho, M. Belsley, R. Vasconcelos & F. Soares. (2011) A comparison of mass parameters determination using capacitive and optical sensors. Sensors and Actuators A: Physical 167:2, pages 327-331.
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B.G. Xu. 2011. Computer Technology for Textiles and Apparel. Computer Technology for Textiles and Apparel 3 22 .
Zhao Bo. (2010) Predicting Cotton Yarn Hairiness in Rotor Spinning. Predicting Cotton Yarn Hairiness in Rotor Spinning.
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.
Jie Feng, Bin Gang Xu Xiao Ming Tao & Tao Hua. (2010) Theoretical Study of a Spinning Triangle with Its Application in a Modified Ring Spinning System. Textile Research Journal 80:14, pages 1456-1464.
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J. Srinivasan. 2010. Technical Textile Yarns. Technical Textile Yarns 185 214 .
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V.H. Carvalho, M.S. Belsley, R.M. Vasconcelos & F.O. Soares. (2009) Automatic Yarn Characterization System: Design of a Prototype. IEEE Sensors Journal 9:8, pages 987-993.
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Z. A. Khan & X. G. Wang. (2009) Yarn setting and hairiness reduction with a steam jet during winding. Fibers and Polymers 10:3, pages 367-370.
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Zulfiqar Khan, Allan E. K. Lim, Lijing Wang, Xungai WangRafael Beltran. (2009) An Artificial Neural Network-based Hairiness Prediction Model for Worsted Wool Yarns. Textile Research Journal 79:8, pages 714-720.
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Suat CanogluS. Kevser Tanir. (2009) Studies on Yarn Hairiness of Polyester/Cotton Blended Ring-Spun Yarns Made from Different Blend Ratios. Textile Research Journal 79:3, pages 235-242.
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Mustafa E. Üreyen & Pelin Gürkan. (2008) Comparison of artificial neural network and linear regression models for prediction of ring spun yarn properties. II. Prediction of yarn hairiness and unevenness. Fibers and Polymers 9:1, pages 92-96.
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R. S. Rengasamy, Asis Patnaik & Hemant Punekar. (2006) Studies on reduction of yarn hairiness by nozzles in ring spinning and winding by airflow simulation. Fibers and Polymers 7:3, pages 317-322.
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