Araştırma Makalesi
BibTex RIS Kaynak Göster
Yıl 2019, Cilt: 29 Sayı: 1, 22 - 29, 26.03.2019
https://doi.org/10.32710/tekstilvekonfeksiyon.451476

Öz

Kaynakça

  • 1. http://textilecentre.blogspot.com.tr/2014/01/different-splicing-systems-used-in.html (Date of access: 23.11.2017)
  • 2. https://schlafhorst.saurer.com/fileadmin/Schlafhorst/pdf/Spulen/ACX5_Brochure_Saurer_en.pdf. (Date of access: 25.01.2018)
  • 3. Taşkın C., Baykaldı B., Gürkan P., 2006, “The Comparison Of Pneumatic And Injection Elastosplicers For Cotton/Elastane Yarns In Winding Process”, Textile and Clothing, 3: 185-189.
  • 4. Issa K., Grütz R., 2005, “New Technique For Optimising Yarn-End Preparation On Splicer, And A Method For Rating The Quality Of Yarn End”, AUTEX Research Journal, 5: 1-19.
  • 5. http://textilesindepth-textilewinding.blogspot.com/2010/09/splicing.html (Date of access: 25.01.2018)
  • 6. Hassen M.B., Jaouachi B., Sahnoun M., Sakli F., 2008, “Mechanical Properties and Appearance of Wet-Spliced Cotton/Elastane Yarns”, Journal of Textile Institute, 99(2): 119-123.
  • 7. Kaushik R.C.D, Sharma I.C., Hari P.K., 1987, “Effect of fiber yarn variables on mechanical properties of spliced yarn”, Textile Research Journal, 57: 490-494.
  • 8. Cheng K.P.S., Lam H.L.I., 2000, “Strength of Pneumatic Spliced Polyester/Cotton Ring Spun Yarns”, Textile Research Journal, 70(3): 243-246.
  • 9. Cheng K.P.S., Lam H.L.I., 2000, “Physical Properties of Pneumatically Spliced Cotton Ring Spun Yarns”, Textile Research Journal, 70(12): 1053-1057.
  • 10. Nawaz M., Farooq A., Tosief M., Shahbaz B., 2005, “Effect of Some Splicing Variables upon Strength Characteristics of Polyester/Cotton Blended Yarns”, Journal of Agriculture and Social Sciences, 1(1): 35-37.
  • 11. Taşkın C., Baykaldı B., Gürkan P., 2004, Elastan Karışımlı İpliklerin Bobinlenmesinde İplik Uç Birleştirme (Splicing) İşlemini Etkileyen Parametrelerin İncelenmesi, TUBİTAK TAM Projesi.
  • 12. Gurkan P., Ozdil N., Taskin, C., 2010, “The Effect of Fiber Properties on the Characteristics of Spliced Yarns Part I: Prediction of Spliced Yarns Tensile Properties”, Textile Research Journal, 80: 429-438.
  • 13. Jaouachi B., Ben Hassen M., Sahnoun M., et al., 2010, “Evaluation of Wet Pneumatically Spliced Elastic Denim Yarns With Fuzzy Theory”, Journal of Textile Institute, 101: 111-119.
  • 14. Wu Z., Shi P., Chen S., Jin Y., Hu X., 2015, “Study On Effects Of Structural Parameters On Untwisting Performance In Pneumatic Yarn Splicing”, Textile Research Journal, 85(17): 1776-1788.
  • 15. Celik H.I., Kaynak H.K., 2017, “Effect Of Fiber Blending Ratios Of Cotton/Polyester Yarns On Retained Splice Diameter”, IOP Conference Series: Materials Science and Engineering. 254 142005.

A RESEARCH ON DETERMINING OPTIMUM SPLICING METHOD IN TERMS OF FIBER TYPES AND YARN COUNT

Yıl 2019, Cilt: 29 Sayı: 1, 22 - 29, 26.03.2019
https://doi.org/10.32710/tekstilvekonfeksiyon.451476

Öz

The quality of the
splice made in the yarn is very important in terms of final yarn performance.
The yarn ends are not spliced well; the yarn breaking strength and elongation
are reduced, resulting in too many breaks in the machines during fabric
production and consequently low yield. Many methods, which are pneumatic
method, the mechanical method, the pneu-mechanical method and electrostatic
method, are used for splicing. Among them, pneumatic splicing is the most
popular. In this study, it was aimed to investigate spliced yarn performances
in terms of three types of splicing methods including air splicing, wet
splicing and mechanical splicing known as twin splicing, and to reveal optimum
splicing method in terms of fiber type and yarn count.
For this aim, a
total of twenty seven ring yarns as pure and blended containing different raw
materials, which are cotton, viscose, polyester, modal and acrylic, were
produced with different yarn counts having Ne 20, Ne 30 and Ne 40.
The obtained yarn samples were spliced in different splicers
including air splicer, wet splicer, and twin splicer on Savio Polar IDLS
winding machine. The strength and elongation values of spliced yarns were
measured with Mesdan-Lab Splice Scanner-3. The measurements were compared to
each other and the values before splicing. The study results revealed that twin
splicer is the best for cotton fiber and acrylic fiber, whereas it is the worst
for regenerated cellulosic fibers, all splicer types can be used for polyester
fiber, and the best splicer type is air splicer for fine yarns whereas it is twin
splicer for coarse yarns.

Kaynakça

  • 1. http://textilecentre.blogspot.com.tr/2014/01/different-splicing-systems-used-in.html (Date of access: 23.11.2017)
  • 2. https://schlafhorst.saurer.com/fileadmin/Schlafhorst/pdf/Spulen/ACX5_Brochure_Saurer_en.pdf. (Date of access: 25.01.2018)
  • 3. Taşkın C., Baykaldı B., Gürkan P., 2006, “The Comparison Of Pneumatic And Injection Elastosplicers For Cotton/Elastane Yarns In Winding Process”, Textile and Clothing, 3: 185-189.
  • 4. Issa K., Grütz R., 2005, “New Technique For Optimising Yarn-End Preparation On Splicer, And A Method For Rating The Quality Of Yarn End”, AUTEX Research Journal, 5: 1-19.
  • 5. http://textilesindepth-textilewinding.blogspot.com/2010/09/splicing.html (Date of access: 25.01.2018)
  • 6. Hassen M.B., Jaouachi B., Sahnoun M., Sakli F., 2008, “Mechanical Properties and Appearance of Wet-Spliced Cotton/Elastane Yarns”, Journal of Textile Institute, 99(2): 119-123.
  • 7. Kaushik R.C.D, Sharma I.C., Hari P.K., 1987, “Effect of fiber yarn variables on mechanical properties of spliced yarn”, Textile Research Journal, 57: 490-494.
  • 8. Cheng K.P.S., Lam H.L.I., 2000, “Strength of Pneumatic Spliced Polyester/Cotton Ring Spun Yarns”, Textile Research Journal, 70(3): 243-246.
  • 9. Cheng K.P.S., Lam H.L.I., 2000, “Physical Properties of Pneumatically Spliced Cotton Ring Spun Yarns”, Textile Research Journal, 70(12): 1053-1057.
  • 10. Nawaz M., Farooq A., Tosief M., Shahbaz B., 2005, “Effect of Some Splicing Variables upon Strength Characteristics of Polyester/Cotton Blended Yarns”, Journal of Agriculture and Social Sciences, 1(1): 35-37.
  • 11. Taşkın C., Baykaldı B., Gürkan P., 2004, Elastan Karışımlı İpliklerin Bobinlenmesinde İplik Uç Birleştirme (Splicing) İşlemini Etkileyen Parametrelerin İncelenmesi, TUBİTAK TAM Projesi.
  • 12. Gurkan P., Ozdil N., Taskin, C., 2010, “The Effect of Fiber Properties on the Characteristics of Spliced Yarns Part I: Prediction of Spliced Yarns Tensile Properties”, Textile Research Journal, 80: 429-438.
  • 13. Jaouachi B., Ben Hassen M., Sahnoun M., et al., 2010, “Evaluation of Wet Pneumatically Spliced Elastic Denim Yarns With Fuzzy Theory”, Journal of Textile Institute, 101: 111-119.
  • 14. Wu Z., Shi P., Chen S., Jin Y., Hu X., 2015, “Study On Effects Of Structural Parameters On Untwisting Performance In Pneumatic Yarn Splicing”, Textile Research Journal, 85(17): 1776-1788.
  • 15. Celik H.I., Kaynak H.K., 2017, “Effect Of Fiber Blending Ratios Of Cotton/Polyester Yarns On Retained Splice Diameter”, IOP Conference Series: Materials Science and Engineering. 254 142005.
Toplam 15 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Giyilebilir Malzemeler
Bölüm Makaleler
Yazarlar

Seval Uyanık

Yayımlanma Tarihi 26 Mart 2019
Gönderilme Tarihi 7 Ağustos 2018
Kabul Tarihi 7 Mart 2019
Yayımlandığı Sayı Yıl 2019 Cilt: 29 Sayı: 1

Kaynak Göster

APA Uyanık, S. (2019). A RESEARCH ON DETERMINING OPTIMUM SPLICING METHOD IN TERMS OF FIBER TYPES AND YARN COUNT. Textile and Apparel, 29(1), 22-29. https://doi.org/10.32710/tekstilvekonfeksiyon.451476

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