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Tenacity of Cotton Yarns Joined During the Rewinding Process

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Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Great technological progress and the automation of spinning processes have caused that machines, most often arranged in streamlines, work better and more effciently. However, in spite of this advanced progress, it is impossible to produce yarns completely devoid of faults. Depending on the raw materials applied and the condition of machinery, there are places in yarn which do not correspond to the quality of yarn stream required. These are thick and thin places, as well as interwoven foreign fbres and contaminants. The last chance of eliminating such faults is the installation of a yarn quality monitoring device at the end of the spinning process, which would stop production when faults appear. The device will then remove the fault and join the yarn ends to create a continuous stream of twisted fbres. Such devices can be mounted on spinning and rewinding machines. This study contains an analysis of the strength parameters of cotton yarn knotless joints with linear densities of 20 and 25 tex, manufactured in both industrial and laboratory conditions. The yarns were rewound on a Schlafhorst Autoconer 338 rewinding machine. Then an assessment was made of the joints' strength received as a result of knotless joining with various adjustments of the splicer. The yarn tenacity before and after the rewinding was compared, and coeffcients of the utilisation of the joints' resistance in the yarn tenacity after rewinding were established.
Słowa kluczowe
Rocznik
Strony
34--36
Opis fizyczny
Bibliogr. 11 poz.,
Twórcy
autor
  • Technical University of Lodz, Faculty of Material Technologies and Textile Design, ul. Żeromskiego 116, 90-924 Łódź, Poland,
Bibliografia
  • 1. Drobina R., Włochowicz A., Machnio M. S.; Multi-Criterion Assessment of Pneumatically Spliced Cotton Combed Ring-Spun Yarns. Fibres and Textiles in Eastern Europe. Vol. 16, No 5 (70) 2008 pp. 25-32.
  • 2. Lewandowski S., Drobina R.; Prediction of properties of Unknotted Spliced Ends of Yarns Using Multiple Regression and Artifcal Neural Networks. Part I: Identifcation of Spliced Joints of Combed Wool Yarn by Artifcal Neural Networks and Multiple Regression. Fibres and Textiles in Eastern Europe. Vol. 16, No 5 (70) 2008 pp. 33-39.
  • 3. Ünal P. G., Özdil N., Taşkın C.; The Effect of Fiber Properties on the Characteristics of Spliced Yarns Part I: Prediction of Spliced Yarns Tensile Properties. Textile Research Journal, March 2010; Vol. 80, 5.
  • 4. Ünal P. G., Özdil N., Taşkın C.; The Effect of Fiber Properties on the Characteristics of Spliced Yarns Part II: Prediction of Retained Spliced Diameter. Textile Research Journal, frst published on March 11, 2010.
  • 5. Ankudowicz W., Dopierała H., Radom C.Swaczyna P.; Linking Yarns from Staple and Filament Fibres by High-Effciency Pneumatic Interlucing. Part I: FactorsInfuencing the Linking Effect and Properties of Interlaced Yarns. Analysis of Tensile Strength Parameters. Fibres and Textiles in Eastern Europe. Vol. 16, No 1 (66) 2008 pp. 37-43.
  • 6. Ankudowicz W., Dopierała H., Radom C., Swaczyna P.; Linking Yarns from Staple and Filament Fibres by High-Effciency Pneumatic Interlucing. Part II: Analysis of Hairiness, Number of Faults and Estimation of the Linking Effests. Fibres and Textiles in Eastern Europe. Vol. 16, No 2 (67) 2008 pp. 18-22.
  • 7. Cheng K. P. S., Lam H. L. I.; Strength of Pneumatic Spliced Polyester/Cotton Ring Spun Yarns. Textile Research Journal,March 2000; Vol. 70, 3.
  • 8. Cheng K. P. S., Lam H. L. I.; Physical Properties of Pneumatically Spliced Cotton Ring Spun Yarns . Textile Research Journal, December 2000; Vol. 70, 12.
  • 9. Hassen M. B., Sakli F.; Experimental Study of Mechanical Splicing. Autex Research Journal. Vol. 5, No 2, June 2005.
  • 10. Autoconer 338, Innovation, know-how, fexibility. Schlafhorst promotional leafet.
  • 11. USTER QANTUM CLEARER. On-line Quality Management in the Spinning Mill. Zellweger Uster 2002.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW7-0015-0006
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