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Design Methodology And Performance Studies Of A Flexible Electrotextile Surface

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
‘The smart textiles’ concept has to develop products based not only on design, fashion and comfort but also in terms of functions. The novel electro-textiles in the market open up new trends in smart and interactive gadgets. ‘Easy to care and durability’ properties are among the most important features of these products. On the other hand, wearable electronic knitwear has been gaining the attention of both researchers and industrial sectors. Combining knitting technology with electronics may become a dominant trend in the future because of the wide application possibilities. This research is concerned primarily with the design methodology of knitted fabrics containing electrically conductive textiles and especially in-use performance studies. The structural characteristics of the fabrics have been evaluated to enhance the performance properties.
Rocznik
Strony
153--157
Opis fizyczny
Bibliogr. 25 poz.
Twórcy
autor
  • Dokuz Eylül University, Textile Eng. Dept. Tinaztepe Kampusu Buca, Izmir, 35397, Turkey
autor
  • Dokuz Eylül University, Textile Eng. Dept. Tinaztepe Kampusu Buca, Izmir, 35397, Turkey
autor
  • Izmir University of Economics, Faculty of Fine Arts and Design, Sakarya Cad. No.156 Balcova Izmir, 35330, Turkey
autor
  • Uniteks Textile Company, A.O.S.B. 10039 Sk. No.26 Cigli, Izmir, 35620, Turkey
autor
  • Uniteks Textile Company, A.O.S.B. 10039 Sk. No.26 Cigli, Izmir, 35620, Turkey
Bibliografia
  • [1] Arai, E., Arai, T., (Eds).(2007). Mechatronics for Safety, Security and Dependability in a New Era. Elsevier (England).
  • [2] Baboian, R. (Ed.) (2005) Crevice Corrosion in Corrosion Tests and Standards: Application and Interpretation 2ndEd. ASTM International (Baltimore)
  • [3] Baurley, S., (2004). Interactive and Experiential Design In Smart Textile Products And Applications. Journal Personal and Ubiquitous Computing, 8 (3-4), pp. 274 - 281
  • [4] Bonfiglio, A., DeRossi, D. (Ed.). (2011). Wearable Monitoring Systems. Springer (New York)
  • [5] BS EN ISO 6330 (2012) Textiles - Domestic washing and drying procedures for textile testing
  • [6] BS EN ISO 12945-1 (2001) Textiles - Determination of fabric propensity to surface fuzzing and to pilling - Part 1: Pilling box method
  • [7] Chen, A.C., (2013). Designing for the daily-life applications with functional textiles. 5th Int. Con. of the Int. Assoc. of Soc. of Design Research, http://design-cu.jp/iasdr2013/papers/1730-1b.pdf
  • [8] Ethridge, E., Urban, D.(2002). Electrotextiles. International Journal of High Speed Electronics and Systems, 12(02), 365-369
  • [9] Knittel, D., Schollmeyer, E., (2009). Electrically high-conductive textiles. Synthetic Metals, 159, 1433-1437
  • [10] Lam Po Tang, S.(2007). Recent Developments in Flexible Wearable Electronics for Monitoring Applications. Transactions of the Institute of Measurement and Control, 29(3/4), 283–300
  • [11] Lopez, G., Custodio, V., Moreno, J.I., (2010). LOBIN: E-Textile and Wireless-Sensor-Network-Based Platform for Healthcare Monitoring in Future Hospital Environments. IEEE Transactions on Information Technology in Biomedicine,14(6), 1446-1458
  • [12] Lymberis A., Gatzoulis L., (2006). Wearable health systems: From smart technologies to real applications. Conf, Proc. IEEE Eng Med. Biol. Soc., 6789-6792
  • [13] Mattila, H.(Ed.), (2006). Intelligent Textiles and Clothing. Woodhead Publishing Ltd.(Cambridge)
  • [14] McCann, J., Bryson, D.(Ed.), (2009). Smart Clothes and Wearable Technology. Woodhead Publishing (Cambridge)
  • [15] McLoughlin, J., Cashman, P., Ledbury, J., (2013). A Smart Textile For Measuring The Impact Of Energy Used In Competitive Contact Sports. The Textile Institute Int. Conf.: Adv. in Functional Textiles, 25 - 26th July 2013, Manchester, UK. (http://eprints.hud.ac.uk/18533/)
  • [16] Power, E.J., Dias, T., (2003). Knitting of Electroconductive Yarns. IEE Eurowearable, 55 – 60
  • [17] Ramdayal, Balasubramanian K, (2013). Advancement In Textile Technology For Defence Application. Defence Sci. Jour., 63(3), 331-339
  • [18] Schwarz, A., Kazani, I., Cunny, L., Hertleer, C., Ghekiere, F. (et al.), (2011). Electro-conductive and Elastic Hybrid Yarns–The Effects of Stretching, Cyclic Straining and Washing on Their Electro-conductive Properties. Materials and Design, 32, 4247–4256
  • [19] Scott, A.R.(Ed.), (2005). Textiles For Protection. Woodhead Publishing(Cambridge)
  • [20] Shishoo, R.(Ed.), (2005). Textiles in Sports. Woodhead Publishing Ltd.
  • [21] Slade, J., et all, (2002). Washing of Electrotextiles. Proceedings of the Materials Research Society Symposium(MRS), 736, 99-108
  • [22] Song, H.Y., Lee, J.H., Kang, D., Cho, H., Cho, H.S. (et al.), (2010). Textile Electrodes Of Jacquard Woven Fabrics For Biosignal Measurement. The Journal of The Textile Institute, 101(8), 758-770
  • [23] Van Langenhove, L.(Ed.), (2007). Smart Textiles for Medicine and Healthcare, Materials, Systems and Applications. Woodhead Publishing Ltd.(Cambridge)
  • [24] Varnaite, S., Katunskis, J., (2009). Influence of Washing on the Electric Charge Decay of Fabrics with Conductive Yarns. Fibers and Textiles in Eastern Europe, 17,(5)76, pp.69-75
  • [25] Wang, F., Lee, H., (2010). Evaluation of the performances of the Electrically Heated Clothing. Annals of Occupational Hygiene, 54, 117-124
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-7ec9fbaa-560c-455f-a3d9-c41dd6d57374
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