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DÜZE TİPİ VE SIKLIK DEĞİŞİMİNİN SÜPREM ÖRGÜ KUMAŞLARDA MAY DÖNMESİ VE BOYUTSAL STABİLİTE ÜZERİNDEKİ ETKİSİ

Year 2014, Volume: 24 Issue: 1, 74 - 80, 01.06.2014

Abstract

Süprem örgü kumaşlar yazlık giysi üretiminde yaygın olarak kullanılmakta ve bu tip kumaşlar için önemli sorunlardan biri yıkama sonrası boyut stabilitesidir. Bu çalışmada, iplik üretiminde düze tipi ve kumaş üretiminde sıklık değişiminin ham ve boyalı süprem kumaşlarda, boyutsal stabilite ve may dönmesi üzerindeki etkisi incelenmiştir. Süprem kumaşlar %100 pamuk, Ne 30/1 open-end rotor ipliğinden üretilmiştir. İplik üretiminde beş farklı seramik düze tipi kullanılmıştır. İplik ve ticari değer/kalite şartları gözetilerek 14-17 cm minimum ve maksimum değerler arasında süprem kumaş olarak örülmüştür. Sonuç olarak düze tipinin boyutsal stabilite ve may dönmesi üzerinde istatiksel açıdan önemli bir etkisinin bulunmadığı, ancak ilmek iplik uzunluğunun (sıklık değişiminin) istatiksel açıdan önemli etkiye sahip olduğu tespit edilmiştir

References

  • 1. Quaynor L., Takahashi M. ve Nakajima M., 2000, “Effects of Laundering on the Surface Properties and Dimensional Stability of Plain Knitted Fabrics”, Textile Research Journal, 70(1), pp28-35.
  • 2. Çoruh E., 2011, “Investigation of properties of single jersey fabrics made from OE-rotor yarns produced by using different nozzle types”, Ph.D. thesis Çukurova University Institute of Natural and Applied Sciences Department of Textile Engineering Adana. PhD thesis,. pp237.
  • 3. Sharma, I. C., Ghosh S. and Gupta., 1985,“Dimensional and Physical Characteristcs of Single Jersey Fabrics” Textile Research Institute, March, pp149- 156.
  • 4. Tao. J., Dhingra. R.C., Chan. C.K., Abbas. M.S., 1997 “Effects of yarn and fabric construction on spirality of cotton single Jersey fabrics”, Textile Research Journal, pp57-68.
  • 5. Araujo, M. D.,Smith G.W., 1989 “Spirality of Knitted Fabrics: Part I: The Nature of Spirality”, Textile Research Journal, vol:59, no:5, pp 247-256.
  • 6. Quaynor L., Takahashi M. ve Nakajima M., 1998 “Effect of Laundering on Bending Properties of Plain-Knitted Fabrics”, J. Text Mach. Soc. Japan (English Ed.), 4, pp 44.
  • 7. Quaynor L., Masaru N., and Masaoki T., 1999, “Dimensional Changes in Knitted Silk and Cotton Fabrics with Laundering”, Textile Research Journal, 69(4), 285-291.
  • 8. Anand S. C., Brown K. S. M., Higgins, L. G.,. 2002 “Effect of Laundering on the Dimensional Stability and Distortion of Knitted Fabrics”, Autex Research Journal, 2,2, pp85-100.
  • 9. Çeken F. ve Kurbak A., 1999,“ Dimensional Properties of Knitted Fabrics Containing Different Materials” Tekstil ve Mühendis, 49-50, pp15-20.
  • 10. Bayazıt Y., A.,1996 ”Investigation of Dimensional Stability of 1x1 Rib Knit Fabrics Produced from OE-Rotor Spun Yarn”, Tekstil ve Konfeksiyon, 1, pp35- 41.
  • 11. Önal L. ve Candan C.,2003”Contribution of Fabric Characteristics and Laundering to Shrinkage of Weft Knitted Fabrics”, Textile Research Journal, ,73(3),pp187-191.
  • 12. Çelik N., Çoruh E., 2008,“Investigation of Performance and Structural Properties of Single Jersey Fabrics Made From Open-end Rotor Spun Yarns”, Tekstil ve Konfeksiyon, 4, pp268-277.
  • 13. Souza A. A. U., Cherem L. F. C., Selene M. A., ve Souza G. U. 2010, “Prediction of Dimensional Changes in Circular Knitted Cotton Fabrics”, Textile Research Journal, , 80(3), pp236-252. 14. USTER HVI 900 Kataloğu, Textile Laboratory-Fiber Testing, 1991.
  • 15. TS EN ISO 139,“Textiles-Standard atmospheres for conditioning and testing” 2008.
  • 16. http://www.uster.com/UI/Statistics.aspx, 2010. 17. Çoruh E., Çelik N., 2013 “Influence of Nozzle Type on Yarn Quality in Open-End Rotor Spinning”, Fibres&Textiles in Eastern Europe, 21, 2(98): pp38-42.
  • 18. TS EN 14970 “Textiles - Knitted fabrics - Determination of stitch length and yarn linear density in weft knitted fabrics”,2006.
  • 19. TS EN 14971 “Textiles - Knitted fabrics - Determination of number of stitches per unit length and unit area”2006.
  • 20. TS EN ISO 12127 “Textiles- Fabrics- Determination of mass per unit area using small samples”1999.
  • 21. TS 5720 EN ISO 6330, “Textiles- Domestic washing and drying procedures for textile testing” 2002.
  • 22. TS EN ISO 5077, “Textiles - Determination of dimensional change in washing and drying” 2009.
  • 23. IWS TM 276 Woolmark Test Method “Test Method for the Angle of Spirality (in Plain Knitted Garments)” Mayıs, 2000.

THE EFFECTS OF FABRIC DENSITY AND NOZZLE TYPE ON STRUCTURAL PROPERTIES, DIMENSIONAL STABILITY AND SPIRALITY OF SINGLE JERSEY KNITTED FABRICS

Year 2014, Volume: 24 Issue: 1, 74 - 80, 01.06.2014

Abstract

Single jersey knitted fabrics are widely used in production of summer clothing and dimensional distortion caused by domestic laundery is an important issue for this type of fabrics. In this study, the effects of fabric density and nozzle type on structural properties, dimensional stability and spirality of single jersey knitted fabrics were investigated for both grey and dyed state. Fabrics were produced with 100% cotton, Ne 30/1 rotor spun yarn. Five different ceramic nozzle types were used in yarn production. The yarns were converted to single jersey knitted fabrics adjusting the yarn loop length between 14-17 cm on the machine as they were the minimun and maximum values limited by the yarn type, machine and commercially accepted conditions. The effect of nozzle type on dimensional stability and spirality is found statistically insignificant, whereas the effect of yarn loop length is significant

References

  • 1. Quaynor L., Takahashi M. ve Nakajima M., 2000, “Effects of Laundering on the Surface Properties and Dimensional Stability of Plain Knitted Fabrics”, Textile Research Journal, 70(1), pp28-35.
  • 2. Çoruh E., 2011, “Investigation of properties of single jersey fabrics made from OE-rotor yarns produced by using different nozzle types”, Ph.D. thesis Çukurova University Institute of Natural and Applied Sciences Department of Textile Engineering Adana. PhD thesis,. pp237.
  • 3. Sharma, I. C., Ghosh S. and Gupta., 1985,“Dimensional and Physical Characteristcs of Single Jersey Fabrics” Textile Research Institute, March, pp149- 156.
  • 4. Tao. J., Dhingra. R.C., Chan. C.K., Abbas. M.S., 1997 “Effects of yarn and fabric construction on spirality of cotton single Jersey fabrics”, Textile Research Journal, pp57-68.
  • 5. Araujo, M. D.,Smith G.W., 1989 “Spirality of Knitted Fabrics: Part I: The Nature of Spirality”, Textile Research Journal, vol:59, no:5, pp 247-256.
  • 6. Quaynor L., Takahashi M. ve Nakajima M., 1998 “Effect of Laundering on Bending Properties of Plain-Knitted Fabrics”, J. Text Mach. Soc. Japan (English Ed.), 4, pp 44.
  • 7. Quaynor L., Masaru N., and Masaoki T., 1999, “Dimensional Changes in Knitted Silk and Cotton Fabrics with Laundering”, Textile Research Journal, 69(4), 285-291.
  • 8. Anand S. C., Brown K. S. M., Higgins, L. G.,. 2002 “Effect of Laundering on the Dimensional Stability and Distortion of Knitted Fabrics”, Autex Research Journal, 2,2, pp85-100.
  • 9. Çeken F. ve Kurbak A., 1999,“ Dimensional Properties of Knitted Fabrics Containing Different Materials” Tekstil ve Mühendis, 49-50, pp15-20.
  • 10. Bayazıt Y., A.,1996 ”Investigation of Dimensional Stability of 1x1 Rib Knit Fabrics Produced from OE-Rotor Spun Yarn”, Tekstil ve Konfeksiyon, 1, pp35- 41.
  • 11. Önal L. ve Candan C.,2003”Contribution of Fabric Characteristics and Laundering to Shrinkage of Weft Knitted Fabrics”, Textile Research Journal, ,73(3),pp187-191.
  • 12. Çelik N., Çoruh E., 2008,“Investigation of Performance and Structural Properties of Single Jersey Fabrics Made From Open-end Rotor Spun Yarns”, Tekstil ve Konfeksiyon, 4, pp268-277.
  • 13. Souza A. A. U., Cherem L. F. C., Selene M. A., ve Souza G. U. 2010, “Prediction of Dimensional Changes in Circular Knitted Cotton Fabrics”, Textile Research Journal, , 80(3), pp236-252. 14. USTER HVI 900 Kataloğu, Textile Laboratory-Fiber Testing, 1991.
  • 15. TS EN ISO 139,“Textiles-Standard atmospheres for conditioning and testing” 2008.
  • 16. http://www.uster.com/UI/Statistics.aspx, 2010. 17. Çoruh E., Çelik N., 2013 “Influence of Nozzle Type on Yarn Quality in Open-End Rotor Spinning”, Fibres&Textiles in Eastern Europe, 21, 2(98): pp38-42.
  • 18. TS EN 14970 “Textiles - Knitted fabrics - Determination of stitch length and yarn linear density in weft knitted fabrics”,2006.
  • 19. TS EN 14971 “Textiles - Knitted fabrics - Determination of number of stitches per unit length and unit area”2006.
  • 20. TS EN ISO 12127 “Textiles- Fabrics- Determination of mass per unit area using small samples”1999.
  • 21. TS 5720 EN ISO 6330, “Textiles- Domestic washing and drying procedures for textile testing” 2002.
  • 22. TS EN ISO 5077, “Textiles - Determination of dimensional change in washing and drying” 2009.
  • 23. IWS TM 276 Woolmark Test Method “Test Method for the Angle of Spirality (in Plain Knitted Garments)” Mayıs, 2000.
There are 21 citations in total.

Details

Other ID JA88VE35RU
Journal Section Articles
Authors

Ebru Çoruh This is me

Nihat Çelik This is me

Publication Date June 1, 2014
Submission Date June 1, 2014
Published in Issue Year 2014 Volume: 24 Issue: 1

Cite

APA Çoruh, E., & Çelik, N. (2014). THE EFFECTS OF FABRIC DENSITY AND NOZZLE TYPE ON STRUCTURAL PROPERTIES, DIMENSIONAL STABILITY AND SPIRALITY OF SINGLE JERSEY KNITTED FABRICS. Textile and Apparel, 24(1), 74-80.

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