Araştırma Makalesi
BibTex RIS Kaynak Göster
Yıl 2019, Cilt: 29 Sayı: 1, 93 - 100, 26.03.2019
https://doi.org/10.32710/tekstilvekonfeksiyon.491362

Öz

Kaynakça

  • 1. Bek G.A., Sabır E.C., “Bir Konfeksiyon Fabrikasında Proses Ve Kalite Kontrol”, Ç.Ü Fen Bilimleri Enstitüsü Yüksek Lisans tezi, 2008, Cilt:19-1
  • 2. Büyükkabasakal, Kemal, “Kumaş dokuma hatalarının tespiti ve sınıflandırılması”, İzmir, Ege Üniversitesi, 2010
  • 3. Cho, C-S., Chung, B-M., Park, M-J., 2005, “Development of Real-Time Vision-Based Fabric Inspection System”, IEEE Trans. on Ind. Elec., Vol. 52, No. 4,pp. 1073-1079, Aug 2005
  • 4. Kısaoğlu, Ö., 2002, “Orta Büyüklükte Bir Dokuma İşletmesinde İstatistiksel Kalite Kontrol Sisteminin Kurulması”, Yüksek Lisans Tezi, Dokuz Eylül Ü.,Fen Bil. Ens., 2002
  • 5. MEGEP, “Mesleki Eğitim Ve Öğretim Sisteminin Güçlendirilmesi Projesi”, Giyim Üretim Teknolojisi, Kumaş Kontrolü, Ankara, 2007
  • 6. Meier, R., 2001, “Uster Fabricscan Akıllı Kumaş Kontrolörü”, XI. Uluslararası İzmir Tekstil ve Hazır Giyim Sempozyumu, İzmir, Ekim 2001
  • 7. Meier, R., Uhlmann, J. and Leuenberger, R., 1999, “Automatic quality inspection for the weaving mill”, International Textile Bulletin, No. 3, pp.46-49, 1999
  • 8. Omar, F., Tekstile Study Center, “Fabric Inspection | Four Point System”, Web blog: https://textilestudycenter.com/fabric-inspection/, April 2018

DEVELOPING AN INTELLIGENT AUTOMATION AND REPORTING SYSTEM FOR FABRIC INSPECTION MACHINES

Yıl 2019, Cilt: 29 Sayı: 1, 93 - 100, 26.03.2019
https://doi.org/10.32710/tekstilvekonfeksiyon.491362

Öz

In textile companies, the detection of
flaws and unacceptable areas of fabrics at the quality control stage has great
importance for apparel production, although it is also a post-manufacturing
operation for weaving and knitting mills, today it is still mostly being
carried out on the guidance of human perception and sensory abilities. Such
quality control operations are based on the attendant employee’s detection of
the flaws and the unacceptable areas by visual inspection and scanning the
overall fabric structure which is being transported on a brightly illuminated
straight plane. The detected flaws during the scanning operation are recorded
on the flaw charts and these outcomes subsequently are subjected to the quality
control supervisor’s evaluation and thereafter, it is decided whether the
related inspection reports would exemplify an appropriate fabric to be used in
production or not. In this study, it is aimed to develop a new system which
enables to integrate the empirical paperwork-based reports that are still being
commonly utilized by the majority of the textile companies in to the
contemporary technology and also allows to compare such reports with the
previous ones when it is necessary. The proposed system development consists of
a fabric inspection machine which is equipped with a PLC-controlled digital
display or in other words an intelligent control, and a web based software that
enables the controller to analyze the reports comprehensively and
simultaneously those of produced by this system,  The system, which renders paperwork reports
obsolete, allows the reports to be viewed on computer screens as soon as the
inspection was completed, and all of the fabric rolls within the same order,
multiple batches or bundles to be displayed on a single screen. Thus, it
permits to determine the usability of the fabric for the production via
employing the 4-points system which is one of the prevailing methods for
quality control procedures in the industry. Consequently, it is aimed to
achieve significant time and labor savings in textile companies via utilizing
this new developed system.

Kaynakça

  • 1. Bek G.A., Sabır E.C., “Bir Konfeksiyon Fabrikasında Proses Ve Kalite Kontrol”, Ç.Ü Fen Bilimleri Enstitüsü Yüksek Lisans tezi, 2008, Cilt:19-1
  • 2. Büyükkabasakal, Kemal, “Kumaş dokuma hatalarının tespiti ve sınıflandırılması”, İzmir, Ege Üniversitesi, 2010
  • 3. Cho, C-S., Chung, B-M., Park, M-J., 2005, “Development of Real-Time Vision-Based Fabric Inspection System”, IEEE Trans. on Ind. Elec., Vol. 52, No. 4,pp. 1073-1079, Aug 2005
  • 4. Kısaoğlu, Ö., 2002, “Orta Büyüklükte Bir Dokuma İşletmesinde İstatistiksel Kalite Kontrol Sisteminin Kurulması”, Yüksek Lisans Tezi, Dokuz Eylül Ü.,Fen Bil. Ens., 2002
  • 5. MEGEP, “Mesleki Eğitim Ve Öğretim Sisteminin Güçlendirilmesi Projesi”, Giyim Üretim Teknolojisi, Kumaş Kontrolü, Ankara, 2007
  • 6. Meier, R., 2001, “Uster Fabricscan Akıllı Kumaş Kontrolörü”, XI. Uluslararası İzmir Tekstil ve Hazır Giyim Sempozyumu, İzmir, Ekim 2001
  • 7. Meier, R., Uhlmann, J. and Leuenberger, R., 1999, “Automatic quality inspection for the weaving mill”, International Textile Bulletin, No. 3, pp.46-49, 1999
  • 8. Omar, F., Tekstile Study Center, “Fabric Inspection | Four Point System”, Web blog: https://textilestudycenter.com/fabric-inspection/, April 2018
Toplam 8 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Giyilebilir Malzemeler
Bölüm Makaleler
Yazarlar

CIHAT OKAN Arıkan 0000-0002-4255-1711

Yayımlanma Tarihi 26 Mart 2019
Gönderilme Tarihi 3 Aralık 2018
Kabul Tarihi 7 Mart 2019
Yayımlandığı Sayı Yıl 2019 Cilt: 29 Sayı: 1

Kaynak Göster

APA Arıkan, C. O. (2019). DEVELOPING AN INTELLIGENT AUTOMATION AND REPORTING SYSTEM FOR FABRIC INSPECTION MACHINES. Textile and Apparel, 29(1), 93-100. https://doi.org/10.32710/tekstilvekonfeksiyon.491362

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.