Faz Değiştiren Maddeler ve Tekstil Uygulamaları

« Sayıya Dön  
Yıl :2012 (Cilt: 19)
Sayı :86
Yazarlar :Arzu KURU, Sennur ALAY AKSOY
DOI: 10.7216/130075992012198606
Makale Özeti :PDF İndir
Makale :PDF İndir
Kaynaklar:

1. Mondal, S., (2008), Phase Change Materials for Smart Textiles: An Overview, Applied Thermal Engineering, Vol.28, 1536-1550p. http://dx.doi.org/10.1016/j.applthermaleng.2007.08.009

2. Tao, X., (2008), Smart Fibres, Fabrics and Clothing, Woodhead Publishing Limited, The Textile Institute, Cambridge, England.

3. Mattila, H.R., (2006), Intelligent Textiles and Clothing, Woodhead Publishing Limited, The Textile Institute,Cambridge, England.

4. Boan, Y., (2005), Physical Mechanism and Characterization of Smart Thermal Clothing, The Hong Kong Polytechnic University, PhD Thesis, Hong Kong, 267p.

5. Erkan, G., (2004), Enhancing The Thermal Properties of Textiles With Phase Change Materials, RJTA Vol. 8 No. 2.

6. www.rubitherm.de/

7. Scott, R.A., (2005), Textiles for Protection. The Textile Institute Publications, Woodhead Publishing Limited, England, 754p.

8. Salaün, F., Devaux, E., Bourbigot, S., Rumeau, P., (2010),Thermoregulating Response of Cotton Fabric Containing Microencapsulated Phase Change Materials, Thermochim. Acta 506, 82-93.
http://dx.doi.org/10.1016/j.tca.2010.04.020 

9. www.outlast.com/

10. Nelson, G., (2002), Application of Microencapsulation in Textiles, Int.J.Pharm.242, 55-62.
http://dx.doi.org/10.1016/S0378-5173(02)00141-2

11. Bryant, Y.G., Colvin, D.P., (1988), Fiber with Reverseible Enhanced Thermal Storage Properties and Fabrics Made Therefrom,USPatent.4,756,958.

12. Bryant, Y.G., Colvin, D.P., (1994), Fabric with Reversible Enhanced thermal Properties, US Patent 5,366,801.

13. Bryant, Y.G., Colvin, D.P., (1995), Micro-Climate Cooling Garment, US Patent 5,415,222.

14. Bryant, Y.G., Colvin, D.P., (1997), Thermally Enhanced Foam Insulation, US Patent 5,637,389.

15. Colvin, V.S., Colvin, D.P., (2001), Microclimate Temperature Regulating Pad and Products Made Therefrom, US Patent 6,298,907 B1.

16. Pushav, R.J., (1999), Skived Foam Article Containing Energy Absorbing Phase Change Materials, US Patent 5,955,188.

17. Pause, B., (2001), Interactive Thermal Insulating System Having a Layer Treated with a Coating of Energy Absorbing Phase Change Material Adjacent a Layer of fibers Containing Energy Absorbing Phase Change Material, US Patent 6,217,993.

18. Pause, B., (2003), Nonwoven Protective Garments with Thermo-Regulating Properties, Journal of Industrial Textiles, 33, 93.  http://dx.doi.org/10.1177/152808303038859

19. Vigo, T.L., Frost, C.E., (1982), Temperature-Sensitive Hollow Fibers Containing Phase Change Salts, Textile Research Journal, October, 633-637p. http://dx.doi.org/10.1177/004051758205201004

20. Mengjin, J., Xiaoqing, S., Jianjun, X., Guangdou, Y., (2008),Preparation of New Thermal Regulating Fiber Based on PVA and Paraffin. Solar Energy Materials & Solar Cells, 92, 1657- 1660p. http://dx.doi.org/10.1016/j.solmat.2008.07.018

21. Zou, G.L., Tan, Z.C., Lan, X.Z., Sun, L.X., Zhang, T., (2004), Preparation and Characterization of Microencapsulated Hexadecane Used for Thermal Energy Storage, Chinese Chemical Letters, 15 (6), 729-732p.

22. Kim, J., Cho, G., (2002), Thermal Storage/Release, Durability and Temperature Sensing Properties of Thermostatic Fabrics Treated with Octadecane-Containing Microcapsules, Textile Research Journal, 72(12), 1093 - 1098p. http://dx.doi.org/10.1177/004051750207201209

23. Choi, K., Cho, G., Kim, P., Cho, C., (2004), Thermal Storage/Release and Mechanical Properties of Phase Change Materials on Polyester Fabrics, Textile Research Journal,74(4), 292-296p. http://dx.doi.org/10.1177/004051750407400402

24. Deveci, S.S., Basal, G., (2009), Preparation of PCM Microcapsules by Complex Coaversation of Silk Fibrion and Chitosan, Colloid Polymer Science, 287(12), 1455-1467p. http://dx.doi.org/10.1007/s00396-009-2115-z

25. Onder, E., Saryer, N., Çimen, E., (2008), Encapsulation of Phase Change Materials by Complex Coaversation to Improve Thermal Performances of Woven Fabrics, Thermochimica Acta, 467, 63-72p.
http://dx.doi.org/10.1016/j.tca.2007.11.007

26. Alay, S., Göde, F., Alkan, C., (2010), Preparation and Characterization of Poly(methylmethacrylate-co-glycidyl methacrylate)/n-hexadecane Nanocapsules as a Fiber Additive for Thermal Energy Storage, Fibers and Polymers,11(8), 1089-1093p.
http://dx.doi.org/10.1007/s12221-010-1089-2

27. Alay, S., Alkan, C., Göde, F., (2011), Synthesis and Characterization of Poly(methylmethacrylate)/n-hexadecane Microcapsules Using Different Cross-linkers and Their Application to Some Fabrics, Thermochimica Acta, 518, 1-8p.

28. Alay, S., Göde, F., Alkan, C., (2011), Synthesis and Thermal Properties of Poly(n-butyl acrylate)/n-hexadecane Microcapsules Using Different Cross-linkers and Their Application to Textile Fabrics, Journal of Applied Polymer Science,120(5), 2821-2829p.
http://dx.doi.org/10.1002/app.33266

29. Alay, S., Gode, F., Alkan, C., (2009), Isıl Enerji Depolama İçin Poli(etil akrilat)/hekzadekan Mikrokapsüllerin Üretilmesi ve Karakterizasyonu, Teknolojik Araştırmalar Dergisi, Cilt:, No:3, 33-46s.

30. Vigo, T.L., Frost, C.M., (1989), Temperature Adaptable Textile Fibres and Method of Preparing Same, USP 4871615.

31. Vigo, T.L., Frost, C.M., (1983), Temperature Adaptable Hollow Fibers Containing Polyethylene Glycols, Journal of Industrial Textiles, 12(4), 243-254p. http://dx.doi.org/10.1177/152808378301200405

32. Vigo, T.L., Frost, C.M., (1985), Temperature-Adaptable Fabrics, Textile Research Journal, 55 (12), 737-743p.  http://dx.doi.org/10.1177/004051758505501205

33. Bruno, J. S., Vigo, T. L., (1987), Thermally Active Fabrics Containing Polyethylene Glycols, Journal of Industrial Textiles, 16 (4), 264-274p.  http://dx.doi.org/10.1177/152808378701600406

34. Chen, C., Wang, L., Huang, Y., (2008), A Novel Shape-Stabilized PCM; Electrospun Ultrafine Fibers Based on Lauric Acid/Polyethylene Terephthalate Composite, Material Letters, 62, 3515-3517p. http://dx.doi.org/10.1016/j.matlet.2008.03.034

35. Alay, S., (2010), Isyl Enerji Depolama Özellikli Mikrokapsüller İçeren Akıllı Tekstil Ürünlerinin Geliştirilmesi, SDÜ, Fen Bilimleri Enstitüsü, Doktora Tezi, Isparta.

36. Chung, H., Cho, G., (2004), Thermal Properties and Physiological Responses of Vapor- Permeable Water- Repellent Fabrics Treated with Microcapsule-Containing PCMs. Textile Research Journal, 74(7), 571-575p.  http://dx.doi.org/10.1177/004051750407400702

37. Shin, Y., Yoo, D., Son, K., (2005), Development of Thermoregulating Textile Materials with Microencapsulated Phase Change Materials (PCM). II. Preparation and Application of PCM Microcapsules. Journal of Applied Polymer Science, 96, 2005-2010p. http://dx.doi.org/10.1002/app.21438

38. Wan, X., Fan, J., (2009). A New Method for Measuring The Thermal Regulatory Properties of Phase Change Material (PCM) Fabrics. Measurement Science and Technology, 20, 1- 6. http://dx.doi.org/10.1088/0957-0233/20/2/025110

39. ASTM D7024 - 04 Standard Test Method for Steady State and Dynamic Thermal Performance of Textile Materials.

Tekstil ve Mühendis - Copyright © 2012