Archive
Year | 2014 (Volume:21) |
Issue | 94 |
Pages | 1-45 |
Cover Page | Cover Page |
Articles
1 | Analysis of Morphology, Luminescent Properties and Illuminating Durability of Photoluminescent Fibre DOI:10.7216/130075992014219401 Authors : Demet YILMAZ, Gamze GÜDER, Tevfik DİKİDAŞ Article Detail | Abstract | Full Text | References |
2 | Effect of Nano-Sized Silver/Zinc Particles in Pigment Printing Paste on Color Performance DOI:10.7216/130075992014219402 Authors : Mustafa TUTAK, Özlem BİLGET Article Detail | Abstract | Full Text | References |
3 | Investigation of Effects of Washing Processes on Fabric Strength and Elongation for Selected Denim Fabric DOI:10.7216/130075992014219403 Authors : Ece KARAZİNCİR, Pınar DURU BAYKAL Article Detail | Abstract | Full Text | References |
4 | Measurement of Fabric Drape by the Methods Based on Image Analysis DOI:10.7216/130075992014219404 Authors : Gülsüm Gökçe PLATTÜRK, Musa KILIÇ Article Detail | Abstract | Full Text | References |
References
1. Çukul, D., (2013), Teknik İpliklerde Son Yıllardaki Gelişmelere Örnekler, Tekstil ve Mühendis, 20, 91, 50-63. http://dx.doi.org/10.7216/130075992013209106
2. Shim, E., Pourdeyhimi, B., Little, T.J., (2004), Luminescence and Mechanical Properties of Photoluminescent Core Bicomponent Fibers, Textile Research Journal, 74, 11, 982-988.
http://dx.doi.org/10.1177/004051750407401108
3. Bracko, S., Rijavec, T., Bizjak, G., Gorenšek, M., (2011), Impregnation Dyeing Of Cotton/Polyester Spun Yarn Mixture With Photoluminescent Pigments, Tekstil ve Konfeksiyon, 1/2011.
4. Cheng,Y., Zhao,Y., Zhang,Y., Cao, X., (2010), Preparation of SrAl2O4:Eu2+, Dy3+ fibers by electrospinning combined with sol–gel process, Journal of Colloid and Interface Science, 344, 321–326.http://dx.doi.org/10.1016/j.jcis.2009.12.044
5. Ge, M., Guo, X., Yan, Y., (2012), Preparation and study on the structure and properties of rare-earth luminescent fiber, Textile Research Journal, 82, 7, 677–684.
http://dx.doi.org/10.1177/0040517511429606
6. Yan,Y., Ge, M., Li, X., Kumar, D.N.T., (2012), Morphology and spectral characteristics of a luminous fiber containing a rare earth strontium aluminate, Textile Research Journal, 82, 17, 1819–1826.http://dx.doi.org/10.1177/0040517511431319
7. Mishra, S.B., Mishra, A.K., Revaprasadu, N., Hillie, K.T., Steyn, W.J., Coetsee, E., Swart, H.C., (2009), Strontium Aluminate/Polymer Composites: Morphology, Luminescent Properties and Durability, Journal of Applied Polymer Science, 112, 3347–3354.
http://dx.doi.org/10.1002/app.29933
8. Peng, L., Luo, Y., Dan, Y., Zhang, L., Zhang, Q., Xia, S., Zhang, X., (2006), The study of preparation and luminescence of polymethyl methacrylate/rare earth composite luminescent materials, Colloid Polymer Science, 285, 153–160.
http://dx.doi.org/10.1007/s00396-006-1540-5
9. TS EN ISO 12945-2 Textiles- Determination of fabric propensity to surface fuzzing and to pilling- Part 2: Modified Martindale method (ISO 12945-2:2000), (2002).
10. AATCC Test Method 20-2002: Fiber Analysis-Qualitative, AATCC Technical Manual, (2003).
11. Verivide Light Cabinet User's Guide.
12. Haranath, D., Shanker, V., Chander, H., Sharma, P., (2002), Studies on the decay characteristics of strontium aluminate phosphor on thermal treatment, Materials Chemistry and Physics, 78, 6–10.http://dx.doi.org/10.1016/S0254-0584(02)00329-2
13. Hunterlab, (2008), Insight on Color: Equivalent White Light Sources and CIE Illuminants, 17, 5, 1-3.
14. Cheng, K.P.S., Li, C.H.L., (2002), JetRing Spinning and its Influence on Yarn Hairiness, Textile Research Journal, 72, 12, 1079–1082.http://dx.doi.org/10.1177/004051750207201207
References
1. Miles, L.W.C., (1994), Textile Printing, Society of Dyers and Colurists, West Yorkshire, 15.
|
2. Wang, C.X., Yin, Y.J., Wang, X.X., Bu, G.J., (2008), Improving the Color Yield of Ultra-fine Pigment Printing on Cotton Fabric, AATCC Review, 8(2), 41-45.
|
3. Ibrahim, N.A., Refaire, R, Ahmed E.F., (2010), Nowel Approach for Attaining Cotton Fabric with Multi-Functional Properties, Journal of Industrial Textiles, 40(1), 49-64. |
4. Jocic D, Tourrette, A, Glampedaki, P, Warmoeskerken, (2009), Application of temperature and pH responsive microhydrogels for functional finishing of cotton fabric, Materials Technology, 24(1), 14-23.
|
5. Gulrajani, ML, Gupta, D, 2011, Emerging techniques for functional finishing of textile, Indian Journal of Fibre & Textile Research, 36(4), 288-397.
|
6. Ilic, V., Sapnjic, Z., Vodnik, V., (2009), The Influence of Silver Content on Antimicrobial Activity and Color of Cotton Fabrics Functionalized wit Ag Nanoparticles, Carbohydrate Polymers, 78, 564-569 |
7. Hipler, U.C., (2008), Textiles with Antimycotic and Antibacterial Properties, Mycoses, 51, 39-43. |
8. Gasti M.P., Alimohammadi F., Shamei, A, (2012), Preparation of water-repellent cellulose fibers using a polycarboxylic acid/hydrophobic silica nanocomposite coating, Surface & Coatings Technology, 206(14), 3208-321. |
9. Liu, J.Q., Shao, J.Z., Wang, G.M., Lu, S.F., Fan, Q.G., (2007), Effect of wool surface modification on water repellent and oil repellent finishings, Acta Polymerica, 1, 75-80
|
10. Hebeish, A.; El-Naggar, M. E.; Fouda, Moustafa M. G., (2011), Highly effective antibacterial textiles containing green synthesized silver nanoparticles, Carbohydrate Polymers, 86 (2), 936-940. |
11. Kurajica, S., Ocko, T., Mandic, (2012), Properties and Antimicrobial Activity of Nanosilver Deposited Cotton Fabric Coated with gamma-methacryloxypropyl Trimethoxysilane, Journal of Nano Research, 20, 77-88. |
12. Montazer, M., Alimohammadi, F., Shamei, A., (2012), In situ synthesis of nano silver on cotton using Tollens' reagent, Carbohydrate Polymers, 87 (2), 1706-1712. |
13. Zhang, D.S., Toh, G.W., Lin, H., Chen, Y.Y., (2012), In situ synthesis of silver nanoparticles on silk fabric with PNP for antibacterial finishing, Journal of Materials Science, 47(15), 5721-5728. |
14. Tang, B., Wang, J.F., Xu, S.P., Afrin, T., Tao, J.L., Xu, W.Q., Sun, L., Wang, X.G., (2012), Function improvement of wool fabric based on surface assembly of silica and silver nanoparticles, Chemical Engineering Journal, 185, 366-373. |
15. Gawish, S.M., Avci, H., Ramadan, A.M., Mosleh, S., Monticello, R., Breidt, F., Kotek, R., (2012), Properties of Antibacterial Polypropylene/Nanometal Composite Fibers, Journal of Biomaterials Science-Polymer, 23(1-4), 43-61. |
16. Moosavi, R., Abbasi, A.R., Yousefi, M., Ramazani, A., Morsali, A., (2012), Ultrasoundassisted coating of polyester fiber with silver bromide nanoparticles, Ultrasonics Sonochemistry, 19(6), 1221-1226. |
17. Bilget, Ö., (2013), Nano Boyutta Gümüş/Çinko Katkılı Pigment Baskı Uygulanmış Kumaşların Antibakteriyel Özelliklerinin Araştırılması, Erciyes Üniversitesi Fen Bilimleri Enstitüsü, Yüksek Lisans Tezi, Kayseri.
|
References
1. Karal, Ö., (1996), Denim Kumaşlarda Yıkamanın Dikiş ve Kumaş Üzerindeki Etkisi, İstanbul Teknik Üniversitesi, Fen Bilimleri Enstitüsü, Tekstil Mühendisliği Anabilim Dalı, Yüksek Lisans Tezi.
|
2. Kunt, A., (2004), Denim Kumaşlarda Konfeskiyon Sonrası Yapılan İşlemlerin Kumaş Mekaniği Üzerine Etkisi, İstanbul Teknik Üniversitesi, Fen Bilimleri Enstitüsü, Tekstil Mühendisliği Anabilim Dalı, Yüksek Lisans Tezi.
|
3. Aslan, M., (2004), Denim Yıkama Prosesinde Enzim Kullanımı, Ege Üniversitesi, Fen Bilimleri Enstitüsü, Tekstil Mühendisliği Ana Bilim Dalı, Yüksek Lisans Tezi.
|
4. Aslan, M., Körlü, A., (2009), Selülaz Enziminin Denim Yıkamada Kullanımı, Tekstil Teknolojileri Elektronik Dergisi, 3(1), 11-23.
|
5. Card, A., Moore, M.A., Ankeny, M., (2006), Garment Washed Jeans: Impact of Launderings on Physical Properties, International Journal Of Clothing Science and Technology, 18(1):43-52. |
6. Korkmaz, Y., (2007), Dikiş Mukavemetine Etki Eden Denim Kumaş ve Dikiş İpliği Parametrelerinin Araştırılması, Tekstil ve Mühendis, 13(65):24-28.
|
7. Khedher, F., Dhouib, S., Msahli, S., Saklı, F., (2009), The Influence of Industrial Finishing Treatments and Their Succession on The Mechanical Properties of Denim Garment, Autex Research Journal, 9(3):93-100.
|
8. Özgüney, A.T., Özçelik, G. ve Özkaya, K., (2009), Laser Soldurma Prosesinin Denim Kumaşların Renk ve Mekanik Özellikleri Üzerine Etkisinin Belirlenmesi, Tekstil ve Konfeksiyon, 2(2009),133-138.
|
9. Kan, C.W., Yuen, C.W.M., (2009), Evaluation of the Performance of Stretch Denim Fabric Under the Effect of Repeated Home Laundering Processes, International Journal Of Fashion Design, Technology And Education, 2(2-3):71-79.
|
10. Çetinaslan, K., Mezarcıöz, S., Çetiner, S., (2013), Yıkama İşleminin Denim Kumaşların Kopma ve Yırtılma Mukavemetine Etkisi, KSÜ Mühendislik Bilimleri Dergisi, 16(1), 38-42.
|
11. Toksöz, M., Mezarcıöz, S., (2013), Denim Kumaşlara Uygulanan Özel Yıkama Uygulamaları, Çukurova Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, 28(2), 141-147.
|
12. Öztürk, D., Eren, H.A., (2010), Tekstil Terbiyesinde Ozon Kullanımı, Uludağ Üniversitesi Mühendislik-Mimarlık Fakültesi Dergisi, 15(2), 37-51.
|
13. Karazincir, E., (2014), Denim Kumaşlarda Dikiş Performansının Araştırılması, Çukurova Üniversitesi, Fen Bilimleri Enstitüsü, Yüksek Lisans Tezi.
|
14. TS EN ISO 13934-2:1999, Tekstil- Kumaşların gerilme özellikleri - Bölüm 2: En büyük kuvvetin tayini - Kavrama metodu, Türk Standartları Enstitüsü, Ankara.
|
References
1. Cusick G.E., (1965), The Dependence of Fabric Drape on Bending and Shear Stiffness, Journal of the Textile Institute, 56, 11, 596–606. |
2. Peirce F.T., (1930), The Handle of Cloth as a Measurable Quantity, Journal of the Textile Institute, 21, 9, 377–416. |
3. Chu C.C., Cummings C.L., Teixeira N.A., (1950), Mechanics of Elastic Performance of Textile Materials Part V: A Study of the Factors Affecting the Drape of Fabrics - The Development of a Drape Meter, Textile Research Journal, 20, 8, 539–548. |
4. Chu C.C., Platt M.M., Hamburger W.J., (1960), Investigation of the Factors Affecting the Drapability of Fabrics, Textile Research Journal, 30, 1, 66-67. |
5. Cusick G.E., (1968), The Measurement of Fabric Drape, Journal of the Textile Institute, 59, 6, 253–260. |
6. Jeong Y.J., (1998), A Study of Fabric-drape Behavior with Image Analysis Part 1: Measurement, Characterization, and Instability, Journal of the Textile Institute, 89, 1, 59–69. |
7. Jeong Y.J., Phillips D.G., (1998), A Study of Fabric-Drape Behavior with Image Analysis Part 2: The Effects of Fabric Structure and Mechanical Properties on Fabric Drape, Journal of the Textile Institute, 89, 1, 70-79. |
8. Robson D., Long C.C., (2000), Drape Analysis Using Imaging Techniques, Clothing and Textiles Research Journal, 18, 1, 1–8. |
9. Kenkare N., May-Plumlee T., (2005), Fabric Drape Measurement: A Modified Method Using Digital Image Processing, Journal of Textile and Apparel Technology and Management, 4, 3, 1–8.
|
10. Willems A., Lomow S.V., Verpoest I., Vandepitte D., (2009), Drapeability Characterization of Textile Composite Reinforcement Using Digital Image Correlation, Optics and Lasers in Engineering, 47, 343-351. |
11. Behera B.K., Pattanayak A.K., (2008), Measurement and Modeling of Drape Using Digital Image Processing, Indıan Journal of Fiber and Textile Research, 33, 230-238.
|
12. Stylos G.K., Wan T.R., (1999), The Concept of Virtual Measurement 3D Fabric Drapeability, International Journal of Clothing Science and Technology, 11, 1, 10-18.
|
13. Lo W.M., Hu J.L., Li L.K., (2002), Modeling a Fabric Drape Profile, Textile Research Journal, 75, 2, 454-463. |
14. Uçar N., Kalaoğlu F., Bahtiyar D., Bilaç O.E., (2004), Investigating the Drape Behavior of Seamed Knit Fabrics with Image Analysis, Textile Research Journal, 74, 2, 166-171. |
15. Vangheluwe L., Kiekens P., (1993), Time Dependence of the Drape Coefficient of Fabrics, Institute Journal Textile Science Technology, 5, 5-8.
|
16. Jeong Y.J., Phillips D.G., (2001), Effect of Pressure Decatizing on Fabric Drape, Textile Research Journal, 71, 5, 415-419. |
17. Behera B.K., Mishra R., (2006), Objective Measurement of Fabric Appearance Using Digital Image Processing, The Journal of the Textile Institute, 97, 2, 147-153. |
18. Mizutani C., Amano T., Sakaguchi Y., (2005), A New Apparatus for the Study of Fabric Drape, Textile Research Journal, 75, 1, 81-87. |
19. Tsai K.H., Tsai M.C., Wang P.N., Shyr T.W., (2009), New Approach to Directly Acquiring the Drape Contours of Various Fabrics, Fibres & Textiles in Eastern Europe, 17, 3 (74), 54-59.
|
20. Shyr T.W., Wang P.N., Cheng K.B., (2007), A Comparison of the Key Parameters Affecting the Dynamic and Static Drape Coefficients of Natural-Fibre Woven Fabrics by a Newly Devised Dynamic Drape Automatic Measuring System, Institute of Textile Engineering, 15, 3, 81-86.
|
21. Shyr T.W., Wang P.N., Lin J.Y., (2009) Subjective and Objective Evaluation Methods to Determine the Peak-trough Threshold of the Drape Fabric Node, Textile Research Journal, 79, 13, 1223–1234. |
22. Matsudaira M., Yang M., Kinari T., Shintaku S., (2003), Changes in the Static and Dynamic Drape Coefficients of Polyester Fabrics through the Finishing Stages, Textile Research Journal, 73, 1, 59-63. |
23. Wang P.N., Cheng K.B., (2011), Dynamic Drape Property Evaluation of Natural Fiber Woven Fabrics Using a Novel Automatic Drape-Measuring Systems, Textile Research Journal, 81, 13, 1405–1415. |
24. Al-Gaadi B., Göktepe F., Halasz M., (2012), A New Method in Fabric Drape Measurement and Analysis of the Drape Formation Process, Textile Research Journal, 82, 5, 502–512. |
25. Matsudaira M., Yang M., (2013), Features of Conventional Static and New Dynamic Drape Coefficients of Woven Silk Fabrics, Textile Research Journal, 73, 3, 250–255. |
26. Matsudaira M., Yamazaki S., Hayashi Y., (2008), Changes in Dynamic Drapability of Polyester Fabrics with Weave Density, Yarn Twist and Yarn count Obtained by Regression Equations, Indian Journal of Fibre and Textile Research, 33, 223-229.
|
27. Tandon S., Matsudaira M., (2010), Improved Discrimination and Prediction of Drapability of Fabrics, Research Journal of Textile and Apparel, 14, 3, 62-76.
|
28. Pratihar P., (2013), Dynamic Drapen Behavior of Textile Fabric: Part 2- Attributes of Various Fabric Parameters, International Journal of Engineering Research and Application, 3, 5, 1017-1021.
|
29. Stump D.M., Fraser W.B., (1996), A Simplified Model of Fabric Drape Based on Ring Theory, Textile Research Journal, 66, 8, 506-514. |
30. Pattanayak A.J., Luximon A., Khandual A., (2010), Prediction of Drape Profile of Cotton Woven Fabrics Using Artificial Neural Network and Multiple Regression Method, Textile Research Journal, 81, 6, 559-566. |
31. Stylos G.K., Powell N.J., (2003), Engineering the Drapability of Textile Fabrics, International Journal of Clothing Science and Technology, 15, 3/4, 211-217. |
32. Fan J., Newton E., Au R., (2001), Predicting Garment Drape with a Fuzzy-Neural Network, Textile Research Journal, 71, 7, 605–608. |
33. Fisher P., Krzywinski S., Rödel H., Schenka., Ulbricht V., (1999), Simulating the Drape Behavior of Fabrics, Textile Research Journal, 69, 5, 331-334. |
34. Breen D.E., House D.H., Wozny M.J., (1994), Predicting the Drape of Woven Cloth Using Interacting Particles, In Proceedings of ACM SIGGRAPH, ACM Press/ACM SIGGRAPH, New York, NY, USA, 365-372.
|
35. Okur A., Cihan T., (2002), Prediction of Fabric Drape Coefficient from FAST Data, Textile Asia, 33, 7, 28-31.
|
36. Tahal I., Abdin Y., Ebeid S., (2012), Prediction of Draping Behavior of Woven Fabrics over Double-Curvature Moulds Using Finite Element Techniques, International Journal of Material and Mechanical Engineering, 1, 25-31.
|
37. Sharma S.B., Sutcliffe M.P.F., (2004), A Simplified Finite Element Model For Draping Of Woven Material, Composites Part A: Applied Science and Manufacturing, 35, 637–643. |
38. Termona Y., (2003), Lattice Model for the Drape and Bending Properties of Nonwoven Fabrics, Textile Research Journal, 73, 1, 74-78. |
39. Sze K. Y. ve Liu X. H., (2003), A co-rotational grid-based model for fabric drapes, International Journal For Numerical Methods In Engıneering, 57, 1503–1521. |
40. Volino P., Magnenat-Thalmann N., (2006), Simple Linear Bending Stiffness in Particle Systems, Eurographics/ ACM SIGGRAPH Symposium on Computer Animation, 101-105, Switzerland.
|
41. Kenkare N., Lamar T.A.M., Pandurangan P., Eischen J., (2008), Enhancing Accuracy of Drape Simulation. Part I: Investigation of Drape Variability via 3D Scanning, Journal of the Textile Institute, 99, 211-218. |
42. Dai X., Fukurawa T., Mitsui S., Takatera M., Shimizu Y., (2001), Drape Formation Based on Geometric Constraints and its Application to Skirt Modelling, International Journal of Clothing Science and Technology, 13, 1, 23-37. |
43. Pandurangan P., Eischen J., Kenkare N., Lamar T.A.M., (2008), Enhancing Accuracy of Drape Simulation. Part II: Optimized Drape Simulation Using Industry-Specific Software, Journal of The Textile Institute, 99, 3, 219-226. |
44. Ngoc N.T.T. ve Anh H.N., (2010), Investigating on Fabric and Skirt Drape in Clothing Construction, 7th International Conference – TEXSCI, September 6-8 2010, Liberec, Czech Republic.
|
45. Kim S.M., Chi Y.S., (2006), Simulation of Cusick Drapemeter Using Particle-Based Modeling: Stability Analysis of Explicit Integration Methods, Textile Research Journal, 76, 9, 712-719. |
46. Hu J., Chan Y.F., (1998), Effect of Fabric Mechanical Properties on Drape, Textile Research Journal, 68, 1, 57–64. |
47. Süle G., (2012), Investigation of Bending and Drape Properties of Woven Fabrics and the Effects of Fabrics Constructional Parameters and Warp Tension on These Properties, Textile Research Journal, 82, 8, 810-819. |
48. Seram N., Rupasinghe W., (2013), The Influence of Bending Rigidity on Drape Coefficient of Selected Light Weight Woven Fabrics with Seams, International Journal of General Engineering and Technology, 2, 1, 25, 32.
|
49. Hu J., Chung S., Lo M.T., (1997), Effect of Seams on Fabric Drape, International Journal of Clothing Science and Technology, 9, 3, 220-227. |
50. Sidabraite V., Masteikaite V., (2003), Effect of Woven Fabric Anisotropy on Drape Behaviour, Material Science, 9, 1, 111-115.
|
51. Kenkare N., May-Plumlee T., (2005), Evaluation of Drape Characteristics in Fabrics, International Journal of Clothing Science and Technology, 17, 2, 109-123. |
52. Frydrych I., Dziworska G., Cieslinska A., (2000), Mechanical Fabric Properties Influencing the Drape and Handle, International Journal of Clothing Science and Technology, 12, 3, 171-183. |
53. Lojen D.Z., Jevsnik S., (2007), Some Aspects of Fabric Drape, Fibers and Textiles in Eastern Europe, 15, 4, 39–45.
|
54. Sun M.N., (2008), A New Tester and Method for Measuring Fabric Stiffness and Drape, Textile Research Journal, 78, 9, 761–770. |
55. Filgueiras A., Fangueiro R., Sountinho F., (2009), Drape Behavior of Functional Knitted Fabrics for Sport Clothing, Indıan Journal of Fibre and Textile Research, 34, 64–68.
|
56. Agraval S. A., (2013), Node Parameters and Its Relation with Constructional and Bending Properties of PC Blended Fabric, International Journal of Engineering Research and Development, 5, 7, 61-66.
|