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Far-Infrared Emission Characteristics and Wear Comfort Property of ZrC-Imbedded Heat Storage Knitted Fabrics for Emotional Garments

Autorzy
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This study examined the far-infrared emission characteristics and wear comfort properties of ZrC-imbedded heat storage knitted fabrics. For this purpose, ZrC-imbedded, heat storage PET (polyethylene terephthalate) was spun from high-viscosity PET with imbedded ZrC powder on the core part and low-viscosity PET on the sheath part using a conjugated spinning method. ZrC-imbedded PET knitted fabric was also prepared and its physical properties were measured and compared with those of regular PET knitted fabric. In addition, ingredient analysis and the far-infrared emission characteristics of the ZrC-imbedded knitted fabrics were analyzed by energy dispersive X-ray spectroscopy and Fourier transform infrared spectroscopy. The thermal properties, moisture absorption, and drying properties of the ZrC-imbedded PET knitted fabric were measured and compared with those of the regular PET knitted fabric. The mechanical properties using the FAST (fabric assurance by simple testing) system and the dye affinity of the ZrC-imbedded knitted fabric were also measured and compared with those of regular PET knitted fabric.
Rocznik
Strony
142--151
Opis fizyczny
Bibliogr. 20 poz.
Twórcy
autor
  • orea Research Institute for Fashion Industry, Daegu, Korea
autor
  • Dept. of Textile Eng. and Technology, Yeungnam Univ, Gyeongsan, Korea
Bibliografia
  • [1] Bahng, G. W. & Lee, J. D. (2014). Development of Heat-generating Polyester Fiber Harnessing Catalytic Ceramic Powder Combined with Heat-generating Super Microorganisms. Textile Research Journal, 84(11), 1220-1230.
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  • [6] Hong, S. Y., Lee, C. H. & Kim, J. Y. (2010). Fabrication of Ceramic Particles Deposited Nano-web using Electrospinning Process and Its Far-infrared Ray Emission Property. Textile coloration and finishing, 22(2), 118-122.
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  • [13] Kim, H. A. & Kim, S. J. (2010). Far-Infrared Emission Characteristics of Germanium Included Fabrics for Emotional Garment. Korean Journal of the Science of Emotion & Sensibility, 13(4), 687-692.
  • [14] Kwon, O. K. (2007). Heat delivery mechanism of textile products and development trend of keeping warmth functionalized product. Textopia, Retrieved October 20, 2014. http://www.textopia.or.kr/new/index.do
  • [15] Lin, C. M, & Chang C. W. (2008). Production of thermal insulation composites containing bamboo charcoal. Text. Res. J., 78(7), 555-560.
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  • [17] Shim, M. H., Park, C. H & Shim, H. S. (2009). Effect of Ceramics on the Physical and Thermo-Physiological Performance of Warm-up Suit. Textile Research Journal, 79(17), 1557-1564.
  • [18] Xin, J. H. (2006). Controlling Colourant Formulation. John H. Xin (Editor). Total Color Management in Textiles. Cambridge : Woodhead Publishing Limited, 136-159.
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Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-411cfd91-c5e1-4cac-ae3f-b7a03bc99221
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