BibTex RIS Cite

KOMPAKT İPLİKLERDEN ÜRETİLMİŞ DOKUMA KUMAŞLARIN TUTUM ÖZELLİKLERİ

Year 2009, Volume: 19 Issue: 2, 108 - 113, 01.12.2009

Abstract

Bu çalışmanın amacı, kompakt eğrilmiş ipliklerden üretilen dokuma kumaşların tutum özelliklerine etki eden bazı faktörlerin incelenmesidir. 20 tex ve 12 tex iplik numaralarında %100 pamuklu kompakt iplikleriyle bezayağı, dimi ve saten doku tiplerinde kumaşlar üretilmiştir. Kumaşlar iki gruba ayrılmış ve gruplardan birine merserizasyon işlemi yapılmıştır. Merserizasyon işlemi görmüş kumaşlar, reaktif boyama ve reaktif baskı işlemlerinden geçirilmiştir. Merserizasyon işlemi görmemiş kumaşlar ise, reaktif boyama, reaktif baskı ve pigment baskı işlemlerinden geçirilmiştir. Sonuç olarak 30 farklı kumaş elde edilmiştir. Kumaşların tutum özelliklerini objektif olarak ölçmek amacıyla Shirley sertlik ölçer, dairesel eğilme ölçeri ve kalınlık ölçer test aletleri kullanılmıştır. Kompakt eğrilmiş ipliklerle dokunan kumaşların tutum özelliklerine iplik numarasının, kumaş dokusunun ve terbiye işlemlerinin istatistiksel olarak önemli bir etkisinin olduğu belirlenmiştir

References

  • 1. Kawabata, S., Masako, N., 1994, “High Quality Fabrics for Garments”, International Journal of Clothing Science and Technology, Vol. 6 (5), pp.20-25.
  • 2. Kawabata, S., Masako N., Yoshihiro, Y., 1999, “A guide line for manufacturing ideal fabrics”, International Journal of Clothing Science and Technology, Vol. 11(2/3), pp.134-140.
  • 3. LI, Y. 2001, Clothing Comfort, “The Science of Clothing Comfort”, Edited by J. M. Layton, The Textile Institute, ISBN 1 870372247, Oxford UK., pp. 1-4
  • 4. Vassiliadis, S., G., Venetsanos, D.T., Provatidis, C., G., 2005, “Optimization Aspects on the Hand of the Fabrics”, Textile Research Journal, Vol. 75(9), pp. 653-661
  • 5. Vassiliadis S., Gurkan P., Kallivretaki A., Provatidis C., 2006, “Subjective Hand Evaluation of Fabrics Produced with Compact and Ring Spun Yarns”, 37th International Symposium on Novelties in Textiles, Ljubljana, Slovenia.
  • 6. Saville B.P., 1999, Objective Evaluation of Fabric Handle, “Physical Testing of Textiles”, The Textile Institute, Woodhead Publishing Ltd., Cambridge-England., pp 256-259
  • 7. Cay, A., Vassiliadis, S., 2006, “Effects of Warp-Weft Density Variation on Fabric Hand”, 37th International Symposium on Novelties in Textiles, Ljubljana, Slovenia.
  • 8. Aliouche, D., Viallier, P., 2000, “Mechanical and Tactile Compression of Fabrics: Influence on Handle”, Textile Research Journal, Vol. 70 (11), pp. 939-944.
  • 9. Yan, K., Höcker, H., Schafer, K., 2000, “Handle of Bleached Knitted Fabric Made from Fine Yak Hair”, Textile Research Journal, Vol. 70(8), pp. 734-738.
  • 10. Manich, A.M., Martí, M., Saurí, R. M., Castellar M. D., 2006, “Effect of Finishing on Woven Fabric Structure and Compressional and Cyclic Multiaxial Strain Properties”, Textile Research Journal, Vol. 76(1), pp. 86-93.
  • 11. Militky, J., Bajzik, V., “Influence of Washing/Ironing Cycles on Selected Properties of Cotton Type Weaves”, International Journal of Clothing Science and Technology, Vol. 9(3), pp. 193-199.
  • 12. Mamalis, P., Andreopoulos, A., N. Spyrellis, 2001, “The Effect Of A Durable Flame-Retardant Finishing On The Mechanical Properties Of Cotton Knitted Fabrics”, International Journal of Clothing Science and Technology, Vol. 13 (2), pp. 132-144.
  • 13. Mavruz, S., Oğulata, R.T., 2001, “Kompakt İplik Eğirme Teknolojisi ve Mevcut Deneyimler Işığında Genel Değerlendirmesi”, Tekstil ve Konfeksiyon, Yıl:18(3), s:197-205.
  • 14. Çeken, F., Göktepe, F., 2005, “Comparison of the Properties of Knitted Fabrics Produced by Conventional and Compact Ring-Spun Yarns” Fibres &Textiles in Eastern Europe, January/March, Vol.13, No:1(49).
  • 15. Kretzschmar, D.S., Özgüney, A.T., Özçelik, G., Özerdem, A., 2007, “The Comparison of Cotton Knitted Fabric Properties Made of Compact and Conventional Ring Yarns Before and After the Dyeing Process”, Textile Research Journal, Vol 77 (4), pp.233-241.
  • 16. Taskin C., Özgüney A.T., Gürkan P., Özcelik G., Özerdem A., Comparison of Woven Fabrics’ Properties from Traditional and Compact Ring-Spun Yarns after Dyeing Processes, Fibres &Textiles in Eastern Europe, 2007, No:1(61).
  • 17. Taşkın, C., Özgüney A.T., Gürkan P., Özcelik G., 2006, “Kompakt Ve Konvansiyonel Ring İpliklerinden Dokunmuş Pamuklu Kumaşlarin Farklı Terbiye İşlemleri Sonrası Boncuklanma Özelliklerinin Karşılaştırılması”, Tekstil ve Konfeksiyon, Yıl:16(2), s:123-128.
  • 18. ASTM D1388- Test methods for Stiffness of Fabrics.
  • 19. Gider, A., 1997, “An Online Fabric Database to Link Fabric Drape and End-Use Properties”, Master of Science Thesis, Istanbul Technical University.
  • 20. Zhou, N., Ghosh, T.K., 1998, “Online Measurement of Fabric Bending Behaviour: Background Need and Potential Solutions”, International Journal of Clothing Science and Technology, Vol. 10 (2), pp. 143-156.
  • 21. ASTM D4032- Standard Test Method for Stiffness of Fabric by the Circular Bend Procedure.
  • 22. ASTM D1777- Standard Test Method for Thickness of Textile Materials.
  • 23. Hu, J., 2004, “Structure and Mechanics of Woven Fabrics”, Woodhead Publishing Ltd., Cambridge-England.
  • 24. Owen, J. D., Livesey, R. G., 1964, “Cloth Stiffness and Hysterisis in Bending”, Journal of Textile Institute, Vol. 55, 516.
  • 25. Platt, M. M., Klein, W. G., Hamburger, W. J., 1958, “Mechanics of Elastic Performance of Textile Materials: Part XIV”, Textile Research Journal, Vol.28, 611.

HANDLE PROPERTIES OF THE WOVEN FABRICS MADE OF COMPACT YARNS

Year 2009, Volume: 19 Issue: 2, 108 - 113, 01.12.2009

Abstract

The target of the current work is to examine the effects of different kinds of finishing treatments on the hand properties of the woven fabrics produced with compact spun yarns. Plain, twill and satin fabrics were produced with 100% cotton compact yarns in two yarn counts of 20 tex and 12 tex. All the fabrics were divided into two groups and mercerization process was applied to the one of the groups. The mercerized fabrics were dyed and printed with reactive dyestuffs. The other non mercerized groups of fabrics were divided into three such as reactive dyed, reactive printed and pigment printed. As a result, 30 different fabrics were obtained. In order to measure the handle properties of the fabrics objectively, Shirley stiffness tester, circular bending rigidity tester and thickness tester were used. It was determined that yarn count, fabric weave and finishing treatment have a statistically significant effect on handle properties of the fabrics woven with compact spun yarns

References

  • 1. Kawabata, S., Masako, N., 1994, “High Quality Fabrics for Garments”, International Journal of Clothing Science and Technology, Vol. 6 (5), pp.20-25.
  • 2. Kawabata, S., Masako N., Yoshihiro, Y., 1999, “A guide line for manufacturing ideal fabrics”, International Journal of Clothing Science and Technology, Vol. 11(2/3), pp.134-140.
  • 3. LI, Y. 2001, Clothing Comfort, “The Science of Clothing Comfort”, Edited by J. M. Layton, The Textile Institute, ISBN 1 870372247, Oxford UK., pp. 1-4
  • 4. Vassiliadis, S., G., Venetsanos, D.T., Provatidis, C., G., 2005, “Optimization Aspects on the Hand of the Fabrics”, Textile Research Journal, Vol. 75(9), pp. 653-661
  • 5. Vassiliadis S., Gurkan P., Kallivretaki A., Provatidis C., 2006, “Subjective Hand Evaluation of Fabrics Produced with Compact and Ring Spun Yarns”, 37th International Symposium on Novelties in Textiles, Ljubljana, Slovenia.
  • 6. Saville B.P., 1999, Objective Evaluation of Fabric Handle, “Physical Testing of Textiles”, The Textile Institute, Woodhead Publishing Ltd., Cambridge-England., pp 256-259
  • 7. Cay, A., Vassiliadis, S., 2006, “Effects of Warp-Weft Density Variation on Fabric Hand”, 37th International Symposium on Novelties in Textiles, Ljubljana, Slovenia.
  • 8. Aliouche, D., Viallier, P., 2000, “Mechanical and Tactile Compression of Fabrics: Influence on Handle”, Textile Research Journal, Vol. 70 (11), pp. 939-944.
  • 9. Yan, K., Höcker, H., Schafer, K., 2000, “Handle of Bleached Knitted Fabric Made from Fine Yak Hair”, Textile Research Journal, Vol. 70(8), pp. 734-738.
  • 10. Manich, A.M., Martí, M., Saurí, R. M., Castellar M. D., 2006, “Effect of Finishing on Woven Fabric Structure and Compressional and Cyclic Multiaxial Strain Properties”, Textile Research Journal, Vol. 76(1), pp. 86-93.
  • 11. Militky, J., Bajzik, V., “Influence of Washing/Ironing Cycles on Selected Properties of Cotton Type Weaves”, International Journal of Clothing Science and Technology, Vol. 9(3), pp. 193-199.
  • 12. Mamalis, P., Andreopoulos, A., N. Spyrellis, 2001, “The Effect Of A Durable Flame-Retardant Finishing On The Mechanical Properties Of Cotton Knitted Fabrics”, International Journal of Clothing Science and Technology, Vol. 13 (2), pp. 132-144.
  • 13. Mavruz, S., Oğulata, R.T., 2001, “Kompakt İplik Eğirme Teknolojisi ve Mevcut Deneyimler Işığında Genel Değerlendirmesi”, Tekstil ve Konfeksiyon, Yıl:18(3), s:197-205.
  • 14. Çeken, F., Göktepe, F., 2005, “Comparison of the Properties of Knitted Fabrics Produced by Conventional and Compact Ring-Spun Yarns” Fibres &Textiles in Eastern Europe, January/March, Vol.13, No:1(49).
  • 15. Kretzschmar, D.S., Özgüney, A.T., Özçelik, G., Özerdem, A., 2007, “The Comparison of Cotton Knitted Fabric Properties Made of Compact and Conventional Ring Yarns Before and After the Dyeing Process”, Textile Research Journal, Vol 77 (4), pp.233-241.
  • 16. Taskin C., Özgüney A.T., Gürkan P., Özcelik G., Özerdem A., Comparison of Woven Fabrics’ Properties from Traditional and Compact Ring-Spun Yarns after Dyeing Processes, Fibres &Textiles in Eastern Europe, 2007, No:1(61).
  • 17. Taşkın, C., Özgüney A.T., Gürkan P., Özcelik G., 2006, “Kompakt Ve Konvansiyonel Ring İpliklerinden Dokunmuş Pamuklu Kumaşlarin Farklı Terbiye İşlemleri Sonrası Boncuklanma Özelliklerinin Karşılaştırılması”, Tekstil ve Konfeksiyon, Yıl:16(2), s:123-128.
  • 18. ASTM D1388- Test methods for Stiffness of Fabrics.
  • 19. Gider, A., 1997, “An Online Fabric Database to Link Fabric Drape and End-Use Properties”, Master of Science Thesis, Istanbul Technical University.
  • 20. Zhou, N., Ghosh, T.K., 1998, “Online Measurement of Fabric Bending Behaviour: Background Need and Potential Solutions”, International Journal of Clothing Science and Technology, Vol. 10 (2), pp. 143-156.
  • 21. ASTM D4032- Standard Test Method for Stiffness of Fabric by the Circular Bend Procedure.
  • 22. ASTM D1777- Standard Test Method for Thickness of Textile Materials.
  • 23. Hu, J., 2004, “Structure and Mechanics of Woven Fabrics”, Woodhead Publishing Ltd., Cambridge-England.
  • 24. Owen, J. D., Livesey, R. G., 1964, “Cloth Stiffness and Hysterisis in Bending”, Journal of Textile Institute, Vol. 55, 516.
  • 25. Platt, M. M., Klein, W. G., Hamburger, W. J., 1958, “Mechanics of Elastic Performance of Textile Materials: Part XIV”, Textile Research Journal, Vol.28, 611.
There are 25 citations in total.

Details

Other ID JA87UG34HH
Journal Section Articles
Authors

Arif Taner Özgüney This is me

Cankut Taşkın This is me

Gonca Özçelik This is me

Pelin Gürkan Ünal This is me

Arzu Özerdem This is me

Publication Date December 1, 2009
Submission Date December 1, 2009
Published in Issue Year 2009 Volume: 19 Issue: 2

Cite

APA Özgüney, A. T., Taşkın, C., Özçelik, G., Gürkan Ünal, P., et al. (2009). HANDLE PROPERTIES OF THE WOVEN FABRICS MADE OF COMPACT YARNS. Textile and Apparel, 19(2), 108-113.

No part of this journal may be reproduced, stored, transmitted or disseminated in any forms or by any means without prior written permission of the Editorial Board. The views and opinions expressed here in the articles are those of the authors and are not the views of Tekstil ve Konfeksiyon and Textile and Apparel Research-Application Center.