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Functional warp-knitted fabrics with integrated superelastic NiTi filaments

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
We report on a particular direction of currently conducted extended research on novel textiles with integrated thin metallic filaments made of an intermetallic shape memory NiTi alloy exhibiting functional behaviour such as superelastic deformation up to 10% and a thermally induced shape memory effect. Within this research direction we focus on development of single and multi-layered warp-knitted fabrics that are directionally reinforced with superelastic NiTi filaments. First, we describe the expected properties of such novel structures and their potential applications. Second, we present the functional thermomechanical behaviour of applied superelastic NiTi filaments. Third, we address questions related to the design and fabrication of warp-knitted fabrics with integrated NiTi filaments. Then, we describe experimental methods applied on novel functional textiles in order to evaluate their functional properties. Finally, we present and discuss results of experiments carried out on these novel functional textiles.
Twórcy
  • Department of Textile Technologies, Faculty of Textile Engineering, Technical University of Liberec, Czech Republic
autor
  • Department of Functional Materials, Institute of Physics of the AS CR Prague, Czech Republic
autor
  • Department of Textile Technologies, Faculty of Textile Engineering, Technical University of Liberec, Czech Republic
Bibliografia
  • 1. Hu, J.; Shape memory polymers and textiles; CRC Press, Woodhead Publishing Limited: Boca Raton FL, Boston, MA, New York, and Washington, DC, 2007.
  • 2. Budillon, F., Gries, T.; Shape memory textiles; Proceedings of SMST, October 3–7, 2004, Kurhaus Baden-Baden, Germany.
  • 3. Chan Vili, Yvonne Y. F.; Textile Research Journal (May 2007) Vol. 77 No. 5 290–300.
  • 4. Heller, L. et al.; E-MRS2007, European Physical Journal: Special Topics 158 (1).
  • 5. Van Humbeeck, J.; Mat. Sci. Eng. A273–275 (1999) 134–148.
  • 6. Duerig, T., Pelton, D.; Mat. Sci. Eng. A273–275 (1999) 149–160.
  • 7. www.fwmetals.com
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-00a14013-74ad-4d9d-8b3a-d522a69a120d
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