Archive
Year | 2016 (Volume:23) |
Issue | 101 |
Pages | 1-79 |
Cover Page | Cover Page |
Articles
1 | Experimental Determination of the Effect of Napping on Mechanical Properties of Bi-Elastic Woven Fabrics DOI:10.7216/1300759920162310101 Authors : Banu YILMAZ AKYÜREK Article Detail | Abstract | Full Text | References |
2 | Investigation of Weaving Capability of a Computer Controlled and Semi-Automatic Sampling Loom DOI:10.7216/1300759920162310102 Authors : Deniz Mutlu ALA, Nihat ÇELİK Article Detail | Abstract | Full Text | References |
3 | Analysing Releasing Attitude of Micro and Molecular Capsules Containning Orange Oil DOI: 10.7216/1300759920162310103 Authors : İrşah GÖNÜLŞEN, Merih SARIIŞIK, Gökhan ERKAN, Salih OKUR Article Detail | Abstract | Full Text | References |
4 | The Effect of Lubricating Acyrilic Polymer on Ageing of Saddlery Leathers DOI: 10.7216/1300759920162310104 Authors : Gökhan ZENGİN, Yunus Emre TEKİN, Arife Candaş ADIGÜZEL ZENGİN Article Detail | Abstract | Full Text | References |
5 | Sustainability and Recycling Opportunities in the Textile and Apparel Sector DOI: 10.7216/1300759920162310105 Authors : Burçin ESER, Pınar ÇELİK, Ahmet ÇAY, Dilşad AKGÜMÜŞ Article Detail | Abstract | Full Text | References |
6 | Hybrid Yarns For Thermoplastic Composites: Manufacturing Methods and Properties DOI: 10.7216/1300759920162310106 Authors : Müslüm KAPLAN Article Detail | Abstract | Full Text | References |
References
1. Greenwood, K., (1975), Weaving; Control of Fabric Structure, Merrow Publishing Co. Ltd., England. | ||||
2. Kolcavova S. B., (2004), The Structure and Final Properties of Woven Fabrics, 2nd International Textile Clothing & Design Conference, 206-210, 3-6 Ekim 2004, Dubrovnik, Crotia. | ||||
3. Yakartepe M., Yakartepe Z., (1998), Genel Tekstil Terbiyesi Kasar, Boya, Apre, Baskı, Cilt 4, T.K.A.M., İstanbul. | ||||
4. Bozdoğan F., (2010), Fiziksel Tekstil Muayeneleri (Kumaş Testleri), Ege Üniversitesi Tekstil ve Konfeksiyon Araştırma ve Uygulama Merkezi Yayını, İzmir. | ||||
5. Çetin, C., (2007), Dokuma Kumaş Özelliklerinin ve Görmüş Olduğu Mekanik Bitim İşlemlerinin Dokuma Kumaş Mukavemetine Etkisi, İ.T.Ü., Fen Bilimleri Enstitüsü, Yüksek Lisans Tezi, İstanbul, Türkiye. | ||||
6. Sabır E. C., Maralcan A., (2010), 2/1 Z Dimi PES/VIS/EA Dokuma Kumaş Özelliklerine Şardon Parametrelerinin Etkisi, Electronic Journal of Textile Technologies, 4, 2, 1-8. | ||||
7. Sarpkaya Ç., Özgür E., Sabır E. C., (2015), The Optimization Of Woven Fabric Tensile Strength With Taguchi Method Based On Grey Relational Analysis, Tekstil Ve Konfeksiyon, 25, 4, 293-299. | ||||
8. Akçan, A., (2001), Lycralı Dokuma Kumaşların Üretimi ve Lycralı Dokuma Kumaşlarda Boyut Değişimi, Afyon Kocatepe Üniversitesi, Fen Bilimleri Enstitüsü, Yüksek Lisans Tezi, Afyon, Türkiye. | ||||
9. Babaarslan O., Balci H., Güler Ö., (2007)., Elastan (Spandex) İlavesinin Poliester/Viskon Karışımlı Dokuma Kumaş Özellikleri Üzerindeki Etkisi, Tekstil ve Konfeksiyon, 17, 2, 110-114. | ||||
10. Kaynak, H. K., Topalbekiroğlu, M., (2007), Investigation of the effect of weave pattern on abrasion and pilling resistance properties, Tekstil ve Konfeksiyon, 17, 1, 40-44. | ||||
11. Taşkın C., Özgüney A.T., Gürkan P., Özçelik G., (2006), Kompakt ve Konvansiyonel Ring İpliklerinden Dokunmuş Pamuklu Kumaşların Farklı Terbiye İşlemleri Sonrası Boncuklanma Özelliklerinin Karşılaştırılması, Tekstil ve Konfeksiyon, 16, 2, 123-128. | ||||
12. Can Y., Akaydın M., (2013), Yıkama İşleminin Pamuklu Bezayağı Kumaşların Boncuklanma Özelliğine Etkileri, Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi, 19, 4, 170-173. | ||||
13.
Yun S. Y., Kim S., Park C. K., (2013), Development of an Objective
Fabric Pilling Evaluation Method. I. Characterization of Pilling Using
Image Analysis, Fibers and Polymers, 14, 5, 832-837. http://dx.doi.org/10.1007/s12221-013-0832-x |
||||
14.
Yun S. Y., Kim S., Park C. K., (2013), Development of an Objective
Fabric Pilling Evaluation Method. II. Fabric Pilling Grading Using
Artificial Neural Network, Fibers and Polymers, 14, 12, 2157-2162. http://dx.doi.org/10.1007/s12221-013-2157-1 |
||||
15. Kayseri G. Ö., Kırtay E., (2011), Farklı Ölçüm Yöntemleri İle Kumaş Boncuklanma Eğiliminin Değerlendirilmesi, Tekstil ve Mühendis, 18, 84, 27-31. | ||||
16.
Behera, B.K., Chand, S., Singh, T.G., Rathee, P., Singh,T.G., Rathee,
P., (1997), Sewability of Denim, International Journal of Clothing
Science and Technology, 9, 2, 128-140. http://dx.doi.org/10.1108/09556229710168261 |
||||
17. Seetharam G., Nagarajan L., (2014), Evaluation of Sewing Performance of Plain Twill and Satin Fabrics Based On Seam Slippage Seam Strength and Seam Efficiency, Journal of Polymer and Textile Engineering (IOSR-JPTE), 1, 3, 09- 21. | ||||
18. Özdil, N., (2003), Kumaşlarda Fiziksel Kalite Kontrol Yöntemleri, Ege Üniversitesi Tekstil ve Konfeksiyon Araştırma ve Uygulama Merkezi Yayını, İzmir. | ||||
19.
Galuszynskı, S., (1985)., Some Aspects Of The Mechanism Of Seam
Slippage In Woven Fabrics, Journal of the Textile Institute; Vol. 76
Issue 6, p425-433. http://dx.doi.org/10.1080/00405008508658957 |
||||
20. Yüce Ö., (2000), Pamuk Gabardin Kumaşlarda Dikiş Randımanı ve Kayması, Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, 21, 3, 533-540. | ||||
21. Namiranian, R., Najar, S. S., Etrati, S. M., Manich, A. M., (2014), Seam slippage and seam strength behavior of elastic woven fabrics under static loading, Indian Journal Of Fibre & Textile Research, 39, 3, 221-229. | ||||
22. Gürarda A., Meriç B., (2010), Slippage And Grinning Behaviour Of Lockstitch Seams In Elastic Fabrics Under Cyclic Loading Condonditions, Tekstil ve Konfeksiyon, 20, 1, 65-69. | ||||
23.
Sülar V., Meşegül C., Kefsiz H., Seki Y., (2015), A comparative study
on seam performance of cotton and polyester woven fabrics, The Journal
of The Textile Institute, 106, 1, 19–30. http://dx.doi.org/10.1080/00405000.2014.899079 |
References
1.
Ala, D. M., Çelik, N., (2015), Bilgisayar Destekli Yarı-Otomatik
Tasarlanmış ve Geliştirilmiş Yerli Bir Numune Dokuma Makinesi, Tekstil
ve Mühendis, 22:98, 17-23. http://dx.doi.org/10.7216/130075992015229802 |
||||
2. Ala, D. M., Çelik, N., (2015), Geliştirilmiş Bir Yerli Dokuma Desen Tasarım Programı, Tekstil ve Mühendis, 22: 99, 27-40. http://dx.doi.org/10.7216/130075992015229904 |
||||
3. Ala, D. M., (2015), Bilgisayar Kontrollü Ağızlık Açma ve Desenlendirme Yapabilen Bir Yarı-Otomatik Numune Kumaş Dokuma Tezgâhı Tasarımı, Geliştirilmesi ve Prototip İmalatı, Çukurova Üniversitesi Tekstil Mühendisliği Ana Bilim Dalı- Doktora Tezi, Adana | ||||
4. http://www.tongyuan-fj.com, 2012, Jiangyin-Tongyuan web sitesi | ||||
5. http://www.ccitk.com, 2012, CCI Tech Inc. web sitesi | ||||
6. http://www.gulasmakina.com.tr, 2012, Gülas Makina web sitesi | ||||
7. Özkan, G., (2006), Bezayağı Dokuma Kumaşlarda Çözgü Gerginliği ile Çözgü ve Atkı Kıvrımı Arasındaki İlişkinin Deneysel Olarak Araştırılması, Tekstil ve Mühendis, 13:62- 63, 22-27. | ||||
8. Razali, N.M., Wah, Y. B., (2011), Power Comparisons of Shapiro-Wilk, Kolmogorov-Smirnov, Lilliefors and Anderson-Darling Tests, Journal of Statistical Modeling and Analytics, 2, 1, 21-33 |
References
1. Gökmen S, Palamutoğlu R, Sarıçoban C, (2012), Gıda Endüstrisinde Enkapsülasyon Uygulamaları, Gıda Teknolojileri Elektronik Dergisi, 7: 36-50. | ||||
2. Avcı A, Dönmez S, (2010), Siklodekstrinler ve Gıda Endüstrisinde Kullanımları, Gıda, 35(4): 305-312. | ||||
3. Akçakoca EP, (2006), Siklodekstrinlerin İnklüzyon Kompleksleri, Tekstil ve Konfeksiyon, 2: 94-99. | ||||
4. Evren M, Tekgüler B, (2012), Uçucu yağların antimikrobiyel özellikleri, Elektronik Mikrobiyoloji Dergisi TR, 09 (3): 28-40. | ||||
5.
Specos, M.M., Garcia, J.J., Tornesello, J., Marino, P., Della Vecchia,
M., Tesoriero, M. D., Hermida, L.G. (2010), Microencapsulated Citronella
Oil For Mosquito Repellent Finishing Of Cotton Textiles. Transactions
of the Royal Society of Tropical Medicine and Hygiene, 104(10), 653-
658. http://dx.doi.org/10.1016/j.trstmh.2010.06.004 |
||||
6.
İnceboz, T., Erkan, G. Türkoğlu, G.C., Sarıışık, A.M., Bakırcı, S.,
Üner, S., Üner, A. (2015), In-Vivo And In-Vitro Tick Repellent
Properties Of Cotton Fabric, Textile Research Journal, 85(19),
2071-2082. http://dx.doi.org/10.1177/0040517515578326 |
||||
7. Sarıışık, A.M., Kartal, G.E., Türkoğlu, G.C., Soysal, B., Erdoğan, M., Okur, S., Duru, A. (2015) Development of Washing Durable Moth Repellent Textile via Inclusion Complex Including Camphor, 9th Aachen Dresden International Textile Conference, Germany. | ||||
8. Türkoğlu, G.C., Sarıışık, A.M., Erkan, G, Deveci, Ö., Yıkılmaz, M.S., Öztuna, S., Kontart, O. (2013), Microencapsulated Limonene Loaded Textile And Its Insect Repellent Behavior, 14th National & 1st International Recent Developments, Textile Technology and Chemistry Symposium, Turkey. | ||||
9. Sarıışık, A.M., Türkoğlu, G.C., Kartal, G.E., Erden, E. (2015), Establishing Optimum Method for B-cyclodextrin Complex to Acquire Antibacterial Textiles, 9th Aachen Dresden International Textile Conference, Germany. | ||||
10. Uğur, Ş.S., Sarıışık, A.M., Türkoğlu, G.C., Erkan, G., Erden, E. (2015), Layer by Layer Assembly of Antibacterial Inclusion Complexes, 6th International Technical Textiles Congress, Turkey. | ||||
11. Türkoğlu, G.C., Sarıışık, A.M., Erkan, G, Erden, E., Pazarlıoğlu, N, Öztuna, S., Kontart, O. (2013), Karvakrol BSiklodekstrin Kompleksi Esaslı Antimikrobiyal Bir Tekstil Ürünü Tasarımı, Uluslararası Temizlik & Kişisel Bakım Ürünleri ve Üretim Teknolojileri Sempozyumu ve Sergisi, Turkey. | ||||
12. Türkoğlu, G.C., Sarıışık, A.M., Erkan, G, Erden, E., Pazarlıoğlu, N, Öztuna, S., Kontart, O. (2013), Formation Inclusion Complexes of B-Cyclodextrin-Thymol and The Antibacterial Properties as Textile Finishing, Aachen Dresden International Textile Conference, Germany. | ||||
13. Aydın, N., OZTURK, G.C., Karaboyacı, M., Alay, S. (2011), Koku İçeren Mikrokapsül Uygulanmış Akrilik El Örgüsü İpliklerden Örülen Kumaşların Karakterizasyonu, SDÜ Fen Bilimleri Enstitüsü Dergisi, 15(1), 67-74. | ||||
14.
Specos, M.M.M., Escobar, G., Marino, P., Puggia, C., Tesoriero, M.V.D.,
Hermida, L. (2010), Aroma Finishing of Cotton Fabrics By Means Of
Microencapsulation Techniques. Journal Of Industrial Textiles,
doi:10.1177/1528083709350184. http://dx.doi.org/10.1177/1528083709350184 |
||||
15.
Rodrigues, S.N., Fernandes, I., Martins, I.M., Mata, V.G., Barreiro,
F., Rodrigues, A.E. (2008), Microencapsulation Of Limonene For Textile
Application, .Industrial & Engineering Chemistry Research, 47(12),
4142-4147. http://dx.doi.org/10.1021/ie800090c |
||||
16. Gönülşen, İ., Sarıışık, M., Erkan, G., Okur, S., (2014), Portakal Yağı İçeren Mikro ve Moleküler Kapsül Aktarılmış Kumaşlardan Salım Davranışlarının İncelenmesi, Uluslararası Tekstil Zirvesi 2. UTZ Kahramanmaraş Bildiri ve Özetler Kitabı. 39-55, 22-24 Ekim, Kahramanmaraş. | ||||
17.
Martel B, Weltrowski M, Ruffin D, (2002), Polycarboxylic acids as
crosslinking agents for grafting cyclodextrins onto cotton and wool
fabrics: study of the process parameters, Journal of Applied Polymer
Science, 83: 1449- 1456. http://dx.doi.org/10.1002/app.2306 |
||||
18. Andronie L, Pânzaru SC, Cozar O, Domşa I, (2011), FTIR Spectroscopy for human colon tissue, Romanian Journal of Biophysics, 21: 85-91. | ||||
19. Gokulakumar B, Narayanaswamy R, (2008), FTIR Analysis of root rot disease in sesame (sesamum indicum), Romanian Journal of Biophysics, 18: 217-223. | ||||
20.
Lee JK, Yang NC, Choi HW, Suh DH, (2003), The Fluorescent Effects on
the N-Substituents of Polyarylenevinylenes Having 1,2 Diphenylmaleimide
Moieties, Macromolecular Research, 11: 92-97. http://dx.doi.org/10.1007/BF03218336 |
||||
21.
Okur S, Ocakoglu K, (2011), New approach for consideration of
adsorption/ desorption data, Communications in Nonlinear Science and
Numerical Simulation, 16: 4643–4648. http://dx.doi.org/10.1016/j.cnsns.2011.02.030 |
References
1.
Afşar, A., Özgünay, H., Yılmaz, O., Adıgüzel Zengin, A.C., Zengin, G.,
(2013), Bitkisel Tabaklanmış Saraciyelik Derilerde Yağlayıcı
Polimerlerin Kullanılabilirliği, Tekstil ve Mühendis, 20, 89, 21-27. http://dx.doi.org/10.7216/130075992013208903 |
||||
2. Covington, A. D., (1997), Modern Tanning Chemistry, Chem. Soc. Rev., 26, 111–126. http://dx.doi.org/10.1039/cs9972600111 |
||||
3. Kılıcarislan, C., Ozgunay, H., (2013), Ultrasound Extraction of Valonea Tannin Part II: Effects on Tanning Structure and Tanning Ability, Journal of the American Leather Chemists Association, 108(2), 63-71. | ||||
4. Krishnamoorthy, G., Sayeed S., Sastry, T:P., Mandal, A.B., (2013), Click chemistry approach to tanning processes: Accelerated vegetable tanning process with improved properties, XXXII. IULTCS Congress, May 29-31th 2013, Istanbul, TURKEY. | ||||
5. Barlow, J.R., Lesko, P.M., (1993), Further Advances in Acrylic Retan / Fatliquors Technical Note, Journal of the American Leather Chemists Association, 88, 217-225. | ||||
6. El'Amma, A., Hodder, J. J., Ward, G., (1996), Lubricating Acrylic Syntans, Journal of the American Leather Chemists Association, 237-245. | ||||
7. El A'mma, A., (2003), High Exhaust Acrylic Chemistry, JALCA, 98, 1-5. | ||||
8. Hodder, J.J., El A'mma, A.G., Lesko, P.M., (1996), Expanding the Performance Range of Lubricating Syntan Technology, Lubricating Acrylic Syntans: A Review of the Technology And Practical Applications, Journal of the American Leather Chemists Association, 91, 237-245. | ||||
9. Palop, R., Marsal, A., (2004a), Factors influencing the waterproofing behaviour of retanning-fatliquoring polymers. Part I, Journal of the American Leather Chemists Association, 99(10), 409-415. | ||||
10. Palop, R., Marsal, A., (2004b), Factors influencing the waterproofing behaviour of retanning-fatliquoring polymers. Part II, Journal of the American Leather Chemists Association, 99(11), p461-467. | ||||
11. Işık, N.O., Karavana, H.A., (2012), Determination of Some Physical Characteristics of Artificially Aged Chrome Tanned Garment Leathers, Tekstil ve Konfeksiyon, 22(1), 64-69. | ||||
12. Işık N.O., Karavana H.A., (2010a), The Changes on Some Chemical Properties of Artificially Aged Garment Leathers, 2010-3rd International Conference on Advanced Materials and Systems, 16-18 September 2010, Bucharest, Romania, 57-61. | ||||
13. Işık N.O., Karavana H.A., (2010), Structural Changes on the Artificially Aged Upholstery Leathers, Chemical Physics Congress IX, 14-16 October 2010, Çeşme, İzmir, TURKEY,43. | ||||
14. Işık N.O., Karavana H.A., (2010b), Some Chemical and Structural Characteristics of Artifically Aged Automobile Leathers, The 4th International Student Conference on Advanced Science and Technology, Ege University, 25-26 May 2010, Bornova, İzmir, TURKEY, 195-196. | ||||
15. TS EN ISO 17228, (2015), Deri-Renk Haslığı Deneyleri- Hızlandırılmış Yaşlanma ile Renkte Değişim, Türk Standartları Enstitüsü (TSE), Ankara. | ||||
16. TS EN ISO 2419, (2006), Deri-Fiziksel ve Mekanik Deneyler-Numune Hazırlama ve Şartlandırma, Türk Standartları Enstitüsü (TSE), Ankara. | ||||
17. TS EN ISO 2418, (2006), Deri - Kimyasal, Fiziksel, Mekanik ve Haslık Deneyleri - Numune Alma Bölgeleri, Türk Standartları Enstitüsü (TSE), Ankara. | ||||
18. TS EN ISO 3376, (2012), Deri-Fiziksel ve Mekanik Deneyler-Çekme Mukavemeti ve Uzama Yüzdesinin Tayini, Türk Standartları Enstitüsü (TSE), Ankara. | ||||
19. TS 4118-2 EN ISO 3377-2, (2005), Deri-Fiziksel ve Mekanik Deneyler-Yırtılma Yükü Tayini-Bölüm 2: Çift Kenar Yırtığı, Türk Standartları Enstitüsü (TSE), Ankara. | ||||
20. TS EN ISO 11640, (2013), Deri-Renk Haslığı Deneyleriİleri Geri Sürtme Çevrimlerine Karşı Renk Haslığının Tayini, Türk Standartları Enstitüsü (TSE), Ankara. | ||||
21.
Zengin, A.C.A., Crudu, M., Maier, S.S., Deselnicu. V., Albu. L.,
Gulumser. G., Bitlisli. B.O., Basaran. B., Mutlu. M.M., (2012),
Eco-leather: Chromium-free Leather Production using Titanium, Oligomeric
Melamine Formaldehyde Resin, and Resorcinol Tanning Agents and the
Properties of the Resulting Leathers, Ekoloji, 21(82), 17-25. http://dx.doi.org/10.5053/ekoloji.2011.823 |
||||
22.TS EN ISO 105-B02, (2014), Tekstil-Renk Haslığı Deneyleri-Bölüm B02: Yapay Işığa Karşı Renk Haslığı - Ksenon Ark Soldurma Lambası Deneyi (ISO 105-B02:2014), Türk Standartları Enstitüsü (TSE), Ankara. | ||||
23. TS EN ISO 14268, (2014), Deri-Fiziksel ve Mekanik Deneyler-Su Buharı Geçirgenliğinin Tayini (ISO 14268:2012), Türk Standartları Enstitüsü (TSE), Ankara. | ||||
24. Dandar, U., Çolak, S.M., Deveci, R., Adıgüzel Zengin, A.C., Zengin, G., (2014), Skin Characteristics of Cervus elaphus L. from Republic of Tuva in Russia, Journal of the American Leather Chemists Association, 109(5), 141-150. | ||||
25. Şeren, A., Bitlisli, B.O., (2013), Termokromik Boyarmaddelerin Deri Üretiminde Kullanım İmkanlarının Geliştirilmesi Üzerine Araştırmalar, Yüksek Lisans Tezi, Deri Mühendisliği Bölümü, Ege Üniversitesi, İzmir, Türkiye. | ||||
26. Anonymus, Acceptable Quality Standards in the Leather and Fotwear Industry, (1996), United Nations Industrial Development Organization, Vienna, p 43. | ||||
27.Mutlu,
M.M, Crudu, M., Maier, S.S., Deselnicu, D., Albu, L., Gulumser, G.,
Bitlisli, B.O., Basaran, B., Tosun, C.C., Adıguzel Zengin, A.C., (2014),
Eco-Leather: Properties of Chromium-Free Leathers Produced with
Titanium Tanning Materials Obtained from the Wastes of Metal Industry,
Ekoloji, 23(91), 83-90. http://dx.doi.org/10.5053/ekoloji.2014.9110 |
References
1. Slater, D., (1997), Consumer Culture and Modernity, Polity Press, Cambridge, UK. | ||||
2. Fletcher, K., (2008), Sustainable Fashion and Textiles, Design Journeys, Earth Scan, London, UK. | ||||
3. Pasquinelli, I., (2012), What Can the Fashion Industry Do to Become More Sustainable?, The Guardian, http://www. guardian.co.uk/sustainable-business/fashionindustrysustainability- strategy, erişim tarihi: 10.09.2015 | ||||
4. Welters, L., Lillethun, A., (2007), The Fashion Reader, Berg, New York, USA. | ||||
5. Johansson, E., (2010), Slow Fashion - The Answer for a Sustainable Fashion Industry?, MSc Thesis, Textile Management, The Swedish School of Textiles, Sweden. | ||||
6. Niinimäki, K., (2013), Tenents of Sustainable Fashion, in "Sustainable Fashion: New Approaches", Ed: Niinimäki, K., Aalto University Publication Series, Helsinki, Finland, 12-29. | ||||
7.
Chen, H., Burns, L.D., (2006), Environmental Analysis of Textile
Products, Clothing and Textile Research Journal, 24, 3, 248-261. http://dx.doi.org/10.1177/0887302X06293065 |
||||
8. Thomas, S., (2008), The "Green Blur" to Ecofashion: Fashioning an Eco-Lexicon, Fashion Theory, 12, 4, 525-540. http://dx.doi.org/10.2752/175174108X346977 |
||||
9.
Hansen, E.G., Schaltegger, S., (2013), 100 Per Cent Organic A
Sustainable Entrepreneurship Perspective on the Diffusion of Organic
Clothing, Corporate Governance, 13, 583-598. http://dx.doi.org/10.1108/CG-06-2013-0074 |
||||
10.
Hansen, E.G., Große-Dunker, F., Reichwald, R., (2009), Sustainability
Innovation Cube – A Framework to Evaluate Sustainability-Oriented
Innovations, International Journal of Innovation Management, 13, 4,
683-713. http://dx.doi.org/10.1142/S1363919609002479 |
||||
11. United Nations, (1987), Report of the World Commission on Environment and Development Our Common Future, http://www.un-documents.net/wced-ocf.htm, erişim tarihi: 17.09.2015 | ||||
12.
Vadicherla, T., Saravanan, D., (2014), Textiles and Apparel Development
Using Recycled and Reclaimed Fibers, in "Roadmap to Sustainable
Textiles and Clothing Ecofriendly Raw Materials, Technologies, and
Processing Methods", Ed: Muthu S.S., Springer Science-Business Media,
Singapore. http://dx.doi.org/10.1007/978-981-287-065-0_5 |
||||
13. Hepbaşlı, A., (2010), Enerji Verimliliği ve Yönetim Sistemi, Yaklaşımlar ve Uygulamalar, Esen Ofset Matbaacılık, İstanbul, Türkiye. | ||||
14. Greenpeace International, (2011), http://www.greenpeaceorg/international/en/publications/reports/Dirty-Laundry/, erişim tarihi: 10.09.2015 | ||||
15.
Choudhury, A.K.R., (2014), Environmental Impacts of the Textile
Industry and Its Assessment Through Life Cycle Assessment, in "Roadmap
to Sustainable Textiles and Clothing - Environmental and Social Aspects
of Textiles and Clothing Supply Chain", Ed: Muthu S.S., Springer
Science-Business Media, Singapore. http://dx.doi.org/10.1007/978-981-287-110-7_1 |
||||
16. Moore, S.B., Wentz, M., (2009), Systems Change for Sustainability in Textiles in "Sustainable Textiles: Life Cycle and Environmental Impact", Ed: Blackburn R.S., Woodhead, Cambridge. | ||||
17. Oecotextiles, (2012), Textile Industry Poses Environmental Hazards, http://www.oecotextiles.com/PDF/textile_industry_hazards.pdf, erişim tarihi: 10.09.2015 | ||||
18. Nagaraj, A.R., (2012), Energy Management in Textile Industry, http://www.fibre2fashion.com/industry-article/41/4066/energy-management1.asp, erişim tarihi: 10.09.2015 | ||||
19.
Reddy, B.S., Ray, B.K., (2011), Understanding Industrial Energy Use:
Physical Energy Intensity Changes in Indian Manufacturing Sector, Energy
Policy, 39, 11, 7234-7243. http://dx.doi.org/10.1016/j.enpol.2011.08.044 |
||||
20. Rupp, J. (2008), Ecology and Economy in Textile Finishing, Textile World, http://www.textileworld.com/Issues/2008/November-December/Features/Ecology_And_Economy_In_Textile_Finishing, erişim tarihi: 10.09.2015 | ||||
21. Wang, Y., (2006), Chapter 1. Introduction, in "Recycling in Textiles", Ed. Wang Y., Woodhead Publishing Ltd., Cambridge, UK. http://dx.doi.org/10.1201/9781439824368.ch1 |
||||
22. Qin, Y., (2014), Global Fibres Overview, Synthetic Fibres Raw Materials Committee Meeting at APIC, Pattaya, Thailand. | ||||
23. The Global Fiber Market, (2014), http://www.lenzing.com/en/investors/equitystory/global-fiber-market.html, erişim tarihi: 10.09.2015 | ||||
24. MADE-BY, (2013), Environmental Benchmark for Fibres,http://www.madeby.org/wpcontent/uploads/2014/03/benchmark_environmental_condensed_16_12_2013_pdf_16845.pdf, erişim tarihi: 10.09.2015 | ||||
25. Kim, Y., Connell, H., Kozar, J.M., (2014), Environmentally Sustainable Clothing Consumption: Knowledge, Attitudes, and Behavior, in "Roadmap to Sustainable Textiles and Clothing - Environmental and Social Aspects of Textiles and Clothing Supply Chain", Ed: Muthu S.S., Springer Science-Business Media, Singapore. | ||||
26. Chiras, D.D., (1998), Environmental Science: A Systems Approach to Sustainable Development, Wadsworth Publishing Company, Belmont, CA, USA. | ||||
27.
Lu, J.J., Hamouda, H., (2014), Current Status of Fiber Waste Recycling
and its Future, Advanced Materials Research, 878, 122-131. http://dx.doi.org/10.4028/www.scientific.net/AMR.878.122 |
||||
28. Vishnoi, A., Environment Protection by Textile Recycling: A Route to Sustainability, http://tmu.ac.in/gallery/viewpointsdcip2013/pdf/track1/T114.pdf, erişim tarihi:10.09.2015 | ||||
29. Cuc, S., Vidovic, M., (2011), Environmental Sustainability through Clothing Recycling, Operations and Supply Chain Management, 4, 2/3, 108-115. | ||||
30. The Eco-Chic Design Award, (2013), Sourcing Textile Waste, http://www.ecochicdesignaward.com/wp-content/blogs.dir/3/files/2013/07/LEARN_Sourcing_ENG.pdf,erişim tarihi: 10.09.2015 | ||||
31. Palm, D., (2011), Improved Waste Management of Textiles, http://www.ivl.se/download/18.7df4c4e812d2da6a416800080103/B1976.pdf, erişim tarihi: 10.09.2015 | ||||
32. Shore, M., (1995), The Impact of Recycling on Jobs in North Carolina, NC Recycling Business Assistance Center, Raleigh, North Carolina. | ||||
33. Rösch, H., Cuc, S., (2008), Abwasserrecycling in der Textilveredelungsindustrie, The International Scientific Symposium "Innovative Solutions for Sustainable Development Of Textiles Industry", Annals of the Oradea University, Fascicle of Textiles and Leatherwork, Cilt: 9, University of Oradea. | ||||
34. Hill, G., Holman, J., (2001), Chemistry in Context, Thomas Nelson and Sons, London, UK. | ||||
35.
Güngör, A., Gupta, S.M., (1999), Issues in Environmentally Conscious
Manufacturing and Product Recovery: A Survey, Computers and Industrial
Engineering, 36, 811-853. http://dx.doi.org/10.1016/S0360-8352(99)00167-9 |
||||
36. Güngör, A., Palamutçu, S., İkiz, Y., (2009), Pamuklu Tekstiller ve Çevre: Bir Bornozun Yaşam Döngü Değerlendirmesi, Tekstil ve Konfeksiyon, 3, 197-205. | ||||
37. Kurtoğlu Necef, Ö., Seventekin, N., Pamuk, M., (2013), A Study on Recycling the Fabric Scraps in Apparel Manufacturing Industry, Tekstil ve Konfeksiyon, 23, 3, 286-289. | ||||
38. Woolard, R., (2009), Logistical Model for Closed Loop Recycling of Textile Materials, MSc Thesis, Textile Engineering, Raleigh, North Carolina. | ||||
39.
Muthu, S.S., Li, Y., Hu, J.Y., Ze, L., (2012), Carbon Footprint
Reduction in the Textile Process Chain: Recycling of Textile Materials,
Fibers and Polymers, 13, 8, 1065-1070. http://dx.doi.org/10.1007/s12221-012-1065-0 |
||||
40.
Wang, Y., Wu, H.C., Li, V.C., (2000), Concrete Reinforcement with
Recycled Fibers, Journal of Materials in Civil Engineering, 12, 4,
314-319. http://dx.doi.org/10.1061/(ASCE)0899-1561(2000)12:4(314) |
||||
41. Hagoort, S., (2013), Evaluating the Impact of Closed Loop Supply Chains on Nike's Environmental Performance and Costs, MSc Thesis, Operations Management and Logistics, Eindhoven University of Technology, Eindhoven. | ||||
42.
Telli, A., Özdil, N., Babaarslan, O., (2012), PET Şişe Atıklarının
Tekstil Endüstrisinde Değerlendirilmesi ve Sürdürülebilirliğe Katkısı,
Tekstil ve Mühendis, 19, 86, 49-55. http://dx.doi.org/10.7216/130075992012198607 |
||||
43. Eryuruk, S.H., (2012), Greening of the Textile and Clothing Industry, Fibres & Textiles in Eastern Europe, 20, 6A(95), 22-27. | ||||
44. Gminder, C.U., (2006), Nachhaltigkeitsstrategien Systemisch Umsetzen: Exploration der Organisationsaufstellung als Managementmethode, PhD Thesis, Hochschule für Wirtschafts-, Rechts- und Sozialwissenschaften (HSG), Universitat St Gallen, St Gallen. | ||||
45.
Tadasse, H., Luque, R., (2011), Advances on Biomass Pretreatment Using
Ionic Liquids: An Overview, Energy and Environmental Science, 4, 10,
3913-3929. http://dx.doi.org/10.1039/c0ee00667j |
||||
46.
Menon, V., Rao, M., (2012), Trends in Bioconversion of Lignocellulose:
Biofuels, Platform Chemicals & Biorefinery Concept, Progress in
Energy and Combustion Science, 38, 4, 522-550. http://dx.doi.org/10.1016/j.pecs.2012.02.002 |
||||
47.
Muthu, S.S., Li, Y., Hu, J.Y., Mok, P.Y., (2012), Recyclability
Potential Index (RPI): The Concept and Quantification of RPI for Textile
Fibres, Ecological Indicators, 18, 58-62. http://dx.doi.org/10.1016/j.ecolind.2011.10.003 |
||||
48. Laura Kathryn Sampson, L.K., (2009), Consumer Analysis of Purchasing Behavior for Green Apparel, MSc Thesis, North Carolina State University, Raleigh, North Carolina. | ||||
49. Kim, F., (2008), Green Day, Women's Wear Daily, 195, 2, 6. | ||||
50.
Connolly, J., Prothero, A., (2008), Green Consumption: Life-Politics,
Risk and Contradictions, Journal of Consumer Culture, 8, 1, 117-145. http://dx.doi.org/10.1177/1469540507086422 |
||||
51. SEC, (2009), Design As a Driver of User-centred Innovation, Commission Staff Working Document, Brussels, 7.4., Commission of the European Communities. | ||||
52.
Goworek, H., Fisher, T., Cooper, T., Woodward, S., Hiller, A., (2012),
The Sustainable Clothing Market: An Evaluation of Potential Strategies
for UK Retailers, International Journal of Retail & Distribution
Management, 40, 12, 935- 955. http://dx.doi.org/10.1108/09590551211274937 |
||||
53.
Jones, P., Comfort, D., Hillier, D., (2010), Sustainability in the
Global Shop Window, International Journal of Retail & Distribution
Management, 33, 12, 882-92. http://dx.doi.org/10.1108/09590550510634611 |
||||
54. Muslu, D., (2012), Innovation and Sustainability in Fashion Industry, MSc Thesis, Fashion Brand Management, The Swedish School of Textiles, Sweden. | ||||
55. Verghese, K., Lewis, H., Fitzpatrick L., (2012), Packaging for Sustainability, Springer, New York, USA. http://dx.doi.org/10.1007/978-0-85729-988-8 |
References
1. http://ec.europa.eu/clima/policies/roadmap/index_en.htm,16.12.2014 | ||||
2. http://www.bmub.bund.de/themen/klima-energie/, 16.12.2014 | ||||
3. http://ec.europa.eu/clima/policies/transport/vehicles/cars/index_en.htm, 16.12.2014 | ||||
4. R&G Faserverbundwerkstoffe GmbH (2009), Handbuch Faserverbundwerkstoffe | ||||
5. Mountasir, A. (2009), Erweiterung und geometrische Modellierung der spacer fabric Strukturen in Kombination von Faltenweb- und Jacquardeinrichtung im Hinblick auf die Funktionsintegration, Technische Universität Dresden, ITM, Master-Arbeit Nr:1357, 2009 | ||||
6.
Flemming, M.; Ziegmann, G.; Roth, S. (1996) Faserverbundbauweisen,
Halbzeuge und Bauweisen, Springer-Verlag Berlin Heidelberg, ISBN:
3540606165 http://dx.doi.org/10.1007/978-3-642-61432-3 |
||||
7. Schemme, M., Werkstoffliche Grundlagen langfaserverstärkter Thermoplaste Werkstoffliche Grundlagen, EATC Automative Seminar, Wolsburg/Germany, 01.07.2003 | ||||
8. Choi, B.D. (2005): Entwicklung von Commingling-Hybridgarnen für faserverstärkte thermoplastische Verbundwerkstoffe. Technische Universität Dresden, Dissertation | ||||
9.
Lehmann, B.; Herzberg, C. (2011): Garnkonstruktionen und
Garnbildungstechniken. In: Cherif, Ch. (Hrsg.): Textile Werkstoffe für
den Leichtbau. Berlin/Heidelberg: Springer- Verlag, ISBN
978-3-642-17991-4, S. 111-170 http://dx.doi.org/10.1007/978-3-642-17992-1_4 |
||||
10. Wulfhorst, B.; Tetzlaff, G.; Kaldenhoff, R., (1992), Herstellung von Hybridgarnen für den Einsatz in Faserverbundwerkstoffen Chemiefasern/Textilindustrie 42/94, H. März, S. T10-T11 | ||||
11. Gong, R., H., (2011), Specialist yarn and fabric structures, developments and applications, Woodhead Publishing Limited, Part 2 s.21-55 | ||||
12.
Sawhney, A., P., S., Ruppenicker, G., F., Kimmel, L., B., Robert, K.,
Q., (1992), Comparison of filament-core spun yarns produced by new and
conventional methods, Textile Research Journal, 62(2), 67–73 http://dx.doi.org/10.1177/004051759206200202 |
||||
13. Wu, W., Y., Lee. J., Y., (1995), Twist in the Spinning of a Composite Yarn, Textile Research Journal, 65:522-526. http://dx.doi.org/10.1177/004051759506500906 |
||||
14.
Huh, Y., Kim, Y., R., Oxenham W., (2002), Analyzing Structural and
Physical Properties of Ring, Rotor, and Friction Spun Yarns, Textile
Research Journal; 72; 156, DOI:10.1177/004051750207200212 http://dx.doi.org/10.1177/004051750207200212 |
||||
15.
Basu, A., (2000), Influence of Yarn Structural Parameters on Rotor-spun
Yarn Properties, The Journal of The Textile Institute, 91:1, 179-182,
DOI: 10.1080/00405000008659498 http://dx.doi.org/10.1080/00405000008659498 |
||||
16. Pouresfandiari F., Fushimi, S., Sakaguchi A., Saito, H. Toriumi, K., Nishimatsu, T., Shimizu, Y., Shirai, H., Matsumoto, Y., I., Gong, H., (2002), Spinning conditions and characteristics of open-end rotor spun hybrid yarns, Textile Research Journal, 72(1), 61–70 | ||||
17.
Cheng, K., B., Murray, R., (2000), Effects of Spinning Conditions on
Structure and Properties of Open-End Cover- Spun Yarns, Textile Research
Journal, 690-5 http://dx.doi.org/10.1177/004051750007000806 |
||||
18. Klein W., (2009), The rieter Manuel of spinning Volume VI, The Textile Institute, Manchester, Woodhead Publishing, UK. | ||||
19.
Cheng, K., B., Cheng, T., W., Lee, K., C., Ueng, T., H., Hsing, W., H.,
(2003), Effects of yarn constitutions and fabric specifications on
electrical properties of hybrid woven fabrics, Composites: Part A 34
971–978 http://dx.doi.org/10.1016/S1359-835X(03)00178-7 |
||||
20. Fischer TECH GARNE GmbH, http://www.fischertechgarne.at/, 31.12.2014 | ||||
21. Kaldenhoff, R., (1995), Friktionsspinn-Hybridgarne als neuartige textile Halbzeuge zur Herstellung von Faserverbundkunststoffen, Dissertation, ITA Aachen | ||||
22.
Abbott, G., M., Freischmidt, G., (1985), Wrapped-yarn reinforced
composites. II. Composite properties, Composites Science and Technology,
24(2), 147–158. http://dx.doi.org/10.1016/0266-3538(85)90056-9 |
||||
23.
Sawhney, A., P., S., Ruppenicker, G., F., Kimmel L., B., Robert, K.,
Q., (1992), Comparison of filament-core spun yarns produced by new and
conventional methods, Textile Research Journal, 62(2), 67–73. http://dx.doi.org/10.1177/004051759206200202 |
||||
24.
Lauke, B., Bunzel U., Schneider, K., (1998), Effect of hybrid yarn
structure on delamination behavior of thermoplastic composites,
Composites Part A: Applied Sciences and Manufacturing, 29, 1397–1409. http://dx.doi.org/10.1016/S1359-835X(98)00059-1 |
||||
25. Wulfhorst, B., (2003), Tekstil Üretim Yöntemleri, Çev.: Demir, A., Torun, A., R., Carl Hanser Verlag, München | ||||
26. Patent TR200301753A2 (2005), Ön hazırlıksız bobinlerden bobine direkt büküm yapabilen ve büküm sıklığı iğ hızından bağımsız ayarlanabilen büküm makinesi ve metodu, Agteks örme ve tekstil endüstrileri san. ve. Tic. Ltd. şirketi | ||||
27. Paul, C., (2012), Funktionalisierung von duroplastischen Faserverbundwerkstoffen durch Hybridgarne, Vieweg+Teubner Verlag | ||||
28. Patent US 4856147, (1989) Composites of stretch broken aligned fiber carbon and glass reinforced resin, Armiger T. E. , Edison D. H. , Lauterbach H. G. , Layton J. R. , Okine R. K., | ||||
29. Patent, WO8901999 (A1), (1989) Hybrid Yarn, Heltra INC. | ||||
30. Braches, E., (1991), The use of hybrid yarns in the manufacture of fibre reinforced thermoplastic composite materials, Proceedings of Techtextil Symposium, Frankfurt, Germany | ||||
31.
Gibson, A., G., Manson, J., A., (1992) Impregnation technology for
termoplastic matrix composites, Composites Manufacturing, 3:223-233. http://dx.doi.org/10.1016/0956-7143(92)90110-G |
||||
32. Patent US 5425796 A (1995), Method of and an apparatus for forming a composite thread including stretching of thermoplastic filaments, Vetrotex France S.A. | ||||
33. Patent DE19915955A1 (2000), Vorrichtung zum Herstellen eines strangartigen Faserverbundes aus Glasfasern, Schuller Gmbh | ||||
34. http://www.ocvreinforcements.com/solutions/Thermopreg.aspx, 31.12.2014 | ||||
35.
Mäder, E., Rothe, C., Gao, S., L., (2007), Commingled yarns of surface
nanostructured glass and polypropylene filaments for effective composite
properties. In: Journal of Materials Science 42 pp. 8062-8070 http://dx.doi.org/10.1007/s10853-006-1481-x |
||||
36.
Mäder, E., Rothe, C., Brunig, H., Leopold, T., (2007), Online spinning
of commingled yarns - equipment and yarn modification by tailored fibre
surfaces. In: Key Engineering Materials, 334-335, S. 229–232. DOI
10.4028 http://dx.doi.org/10.4028/www.scientific.net/kem.334-335.229 |
||||
37. Mäder, E., Rothe, C., (2006), Tailoring of commingled yarns for effective composite properties. In: Chemical Fibers International 56 (2006) pp. 298-300 | ||||
38. Abounaim, M., D., Hoffmann, G., Diestel, O., Cherif, C., (2009), Development of flat knitted spacer fabrics for composites using hybrid yarns and investigation of twodimensional mechanical properties. In: Textile Research Journal 79, Nr. 7, S. 596–610. DOI 10.1177/0040517508101462s | ||||
39.
Mäder, E., Rausch, J., Schmidt, N., (2008), Commingled yarns–
Processing aspects and tailored surfaces of polypropylene/glass
composites, Composites: Part A 39 612–623 http://dx.doi.org/10.1016/j.compositesa.2007.07.011 |
||||
40. Demir, A., (2006), Sentetik Filament İplik Üretim ve Tekstüre Teknolojileri, Şan Ofset, İstanbul. | ||||
41.
Alagirusamy R., and Ogale V., (2004), Commingled and Air Jet-textured
Hybrid Yarns for Thermoplastic composites, Journal of Industrial
Textiles 33: 223, DOI: 10.1177/1528083704044360 http://dx.doi.org/10.1177/1528083704044360 |
||||
42. Bunzel, U., Lauke, B., Schneider, K., (1999), Air Textured Hybrid Yarn Structures and Their Influence on the Properties of Long Fiber Reinforced Thermoplastic Composites, TechnischeTextilien, 42(1): 10–12 + E2 | ||||
43.
Wakeman, M., D., Cain, T., A., Rudd, C., D., Brooks, R., Long, A., C.,
(1998), Compression Moulding of Glass and Polypropylene Composites for
Optimised Macro- and Micro- Mechanical Properties – 1 Commingled Glass
and Polypropylene, Composite Science Technology, 58(12): 1879–1898 http://dx.doi.org/10.1016/S0266-3538(98)00011-6 |
||||
44.
Alagirusamy, R., Ogale, V. (2004). Commingled and Air Jettextured
Hybrid Yarns for Thermoplastic Composites. Journal of Industrial
Textiles, 33(4), 223–243. doi:10.1177/1528083704044360 http://dx.doi.org/10.1177/1528083704044360 |
||||
45.
Alagirusamy, R., Ogale, V. (2008), Properties of GF/PP Commingled Yarn
Composites, Journal of Thermoplastic Composite Materials 21, Nr. 6, S.
511–523. DOI 10.1177/0892705708091281 http://dx.doi.org/10.1177/0892705708091281 |
||||
46. Mankodi, H., Patel, P., (2010), Study the effect of commingling parameters on glass/ poly-propylene hybrid yarn properties, Autex Research Journal, Vol 9, No 3 | ||||
47. COMFIL: Yarns/Rovings. http://www.comfil.biz/products/ yarnsroving.php, 31.12.2014 | ||||
48. Patent DE202008013041, (2008), Linienförmiges Kunststoffprofil mit strukturierter Oberfläche, Sächsisches Textilforschungsinstitut e.V. | ||||
49. http://www.kvb-chemnitz.de/, 31.12.2014 | ||||
50. Schappe Techniques, http://www.schappe.com/, 31.12.2104 | ||||
51. Patent FR2958663 (A1), (2011), Method for obtaining preconsolidated hybrid thread i.e. carbon fibers, involves forming pre-consolidated hybrid wire by reducing mass volume of hybrid wire by subjecting portion of wire to predetermined pressur, Schappe SA | ||||
52. Golzar, M., (2004), Melt Spinning of Fine PEEK Filaments, PhD Thesis, TU Dresden, Germany. | ||||
53.
Acar,M., Turton, R., K.,Wray G., R., (1986), Analysis of the air-jet
yarn-texturing process, IV–Fluid forces acting on the filaments and the
effects of filament cross-sectional area and shape, Journal of Textile
Institute, 77(4), 247–254. http://dx.doi.org/10.1080/00405008608658417 |
||||
54.
M. Golzar, H. Brünig and E. Mäder, (2007), Commingled Hybrid Yarn
Diameter Ratio in Continuous Fiber-reinforced Thermoplastic Composites,
Journal of Thermoplastic Composite Materials, 20; 17, DOI:
10.1177/0892705707068069 http://dx.doi.org/10.1177/0892705707068069 |
||||
55. Abounaim, M., (2011), Process development for the manufacturing of flat knitted innovative 3D spacer fabrics for high performance composite applications, PhD Thesis,Technische Universität Dresden, Germany | ||||
56.
Alagirusamy, R., Ogale, V. (2005), Development and Characterization of
GF/PET, GF/Nylon, and GF/PP Commingled Yarns for Thermoplastic
Composites, Journal of Thermoplastic Composite Materials; 18; 269,
DOI:10.1177/0892705705049557 http://dx.doi.org/10.1177/0892705705049557 |
||||
57. Choi, B., D., Diestel, O., Offermann, P., Hübner, T., Mäder, E., (2001), Weiterentwicklung von Commingling-Hybridgarnen für thermoplastische Faserverbundwerkstoffe 11.Techtextil Symposium, Vortragsnummer 212/219 | ||||
58. Optimierung des Commingling-Prozesses zur Herstellung von Hybridgarnen für langfaserverstärkte Thermoplaste (AiFProjekt Nr. 11644 B), (1998-2000), TU Dresden, http://tudresden.de/die_tu_dresden/fakultaeten/fakultaet_maschinenwesen/itm/forschung / forschungsthemen / thermoplaste | ||||
59. Gries, T., Janetzko, S., Kravaev, P., (2011), Textile Verstärkungsstrukturen – Übersicht der Forschungsaktivitäten im Rahmen des SFB 532, 6th Colloquium on Textile Reinforced Structures (CTRS6) | ||||
60.
Brünig, H., Beyreuther, R., Vogel, R. and Tändler, B., (2003), Melt
Spinning of Fine and Ultra Fine PEEK-filaments, J. Materials Science,
38(10): 2149–2153. http://dx.doi.org/10.1023/A:1023719912726 |
||||
61. Lauke, B., Bunzel U., Schneider, K., (1998), Delaminationsverhalten von langfaserverstärkten thermoplastischen UD-Verbunden, hergestellt aus unterschiedlichen Hybridgarnstrukturen, Materialwiss. und Werkstofftechnik 28, S. 465-474 | ||||
62.
Kravaev P., Stolyarov O., Seide G., Gries T., (2013) A method for
investigating blending quality of commingled yarns, Textile Research
Journal 83(2) 122–129, DOI:10.1177/0040517512456760 http://dx.doi.org/10.1177/0040517512456760 |
||||
63.
Kravaev P., Stolyarov O., Seide G., Gries T., (2014) Influence of
process parameters on filament distribution and blending quality in
commingled yarns used for thermoplastic composites, Journal of
Thermoplastic Composite Materials 2014, Vol. 27(3)350–363, DOI:
10.1177/0892705712446167 http://dx.doi.org/10.1177/0892705712446167 |
||||
64.
Sakaguchi, M., Nakai A., Hamada H., Takeda N., (2000), The Mechanical
Properties of Unidirectional Thermoplastic Composites Manufactured by a
Micro-Braiding Technique. Composites Science and Technnology, 60: p.
717-722. http://dx.doi.org/10.1016/S0266-3538(99)00175-X |
||||
65. Laberge-Lebel, L., (2005),Manufacturing of Braided Thermoplastic Composites with Commingled Fibers, M.Sc. Thesis, Concordia University, Canada | ||||
66.
Zhou, F., L., Gong, R., H., Porat, I., (2010), Nano-coated hybrid
yarns using electro spinning, Surface and Coatings Technology, 204, 3459
– 3463 http://dx.doi.org/10.1016/j.surfcoat.2010.04.021 |
||||
67.
Foroughi, J., Spinks, G., M., Antiohos, D., Mirabedini, A., Gambhir,
S., Wallace, G., G., Shaban R. Ghorbani, G., S, Peleckis,G., Kozlov, M.,
E., Marcio D., Lima, E., M., Baughman., R., H., (2014), Highly
Conductive Carbon Nanotube-Graphene Hybrid Yarn, Adv. Funct. Mater., 24,
5859–5865 http://dx.doi.org/10.1002/adfm.201401412 |
||||
68.
Hasan M., M., B., Offermann M., Haupt M., Nocke A., Cherif, C., (2014),
Carbon filament yarn-based hybrid yarn for the heating of
textile-reinforced concrete, Journal of Industrial Textiles, 44: 183,
DOI: 10.1177/1528083713480380 http://dx.doi.org/10.1177/1528083713480380 |
||||
69.
Hasan M., M., B., Nocke A., Cherif, C., (2013), High Temperature
Resistant Insulated Hybrid Yarns for Carbon Fiber Reinforced
Thermoplastic Composites, Journal of Applied Polymer Science, DOI:
10.1002/APP.39270 http://dx.doi.org/10.1002/app.39270 |
||||
70.
Mountasir A., Hoffmann G., Cherif C., (2013) Development of
multilayered woven panels with integrated stiffeners in the transverse
and longitudinal directions for thermoplastic lightweight applications,
Textile Research Journal 83(14) 1532–1540, DOI: 10.1177/0040517512474367 http://dx.doi.org/10.1177/0040517512474367 |
||||
71.
Barani, H., (2014), Antibacterial continuous nanofibrous hybrid yarn
through in situsynthesis of silver nanoparticles: Preparation and
characterization, Materials Science and Engineering C, 43, 50–57 http://dx.doi.org/10.1016/j.msec.2014.07.004 |
||||
72.
Baghaei, B., Skrifvars M., Berglin, L., (2013), Manufacture and
characterisation of thermoplastic composites made from PLA/hemp
co-wrapped hybrid yarn prepregs, Composites: Part A, 50, 93-101,
http://dx.doi.org/10.1016/j.compscitech.2013.10.011 http://dx.doi.org/10.1016/j.compscitech.2013.10.011 |
||||
73.
Baghaei, B., Skrifvars M., Berglin, L., (2015), Characterization of
thermoplastic natural fibre composites made from woven hybrid yarn
prepregs with different weave pattern, Composites:Part A 76 (2015)
154–161 http://dx.doi.org/10.1016/j.compositesa.2015.05.029 |
||||
74.
Köckritz, T., Schiefer T., Jansen, I., Beyer E., (2013), Improving the
bond strength at hybrid-yarn textile thermoplastic composites for
high-technology applications by laser radiation, International Journal
of Adhesion & Adhesives, 46(2013)85–94 http://dx.doi.org/10.1016/j.ijadhadh.2013.06.004 |
||||
75.
Thieme M., Boehm R., Gude, M., Hufenbach,W., (2014), Probabilistic
failure simulation of glass fibre reinforced weftknitted thermoplastics,
Composites Science and Technology 90 (2014) 25–31,
http://dx.doi.org/10.1016/j.compscitech.2013.10.011 http://dx.doi.org/10.1016/j.compscitech.2013.10.011 |
||||
76.
Döbrich, O., Gereke, T., Cherif, C., Krzywinski, S., (2013) Analysis
and finite element simulation of the draping process of multilayer knit
structures and the effects of a localized fixation, Advanced Composite
Materials, 22:3, 175-189, DOI:10.1080/09243046.2013.791239 http://dx.doi.org/10.1080/09243046.2013.791239 |
||||