@article{ART001454668},
author={Soya Hong and 이창환 and Jooyong Kim},
title={Fabrication of Ceramic Particles Deposited Nano-web using Electrospinning Process and Its Far-infrared Ray Emission Property},
journal={Textile Coloration and Finishing },
issn={1229-0033},
year={2010},
volume={22},
number={2},
pages={118-122}
TY - JOUR
AU - Soya Hong
AU - 이창환
AU - Jooyong Kim
TI - Fabrication of Ceramic Particles Deposited Nano-web using Electrospinning Process and Its Far-infrared Ray Emission Property
JO - Textile Coloration and Finishing
PY - 2010
VL - 22
IS - 2
PB - The Korean Society Of Dyers And Finishers
SP - 118
EP - 122
SN - 1229-0033
AB - The interest in textile which has far-infrared ray emissive property has been increased in the field of biophysics and medicine. In this study, far-infrared ray emissive polyurethane nano-web was obtained using electrospinning of polyurethane(PU)solution mixed with ceramics powder and far-infrared ray emissive properties of nano-web were evaluated by measuring far-infrared ray emission power and emissivity(%). To investigate the influence of concentration of ceramics powder in PU solution and temperature for far-infrared ray emissive properties, far-infrared ray emissivity was measured at varied temperature using various nano-web including varied concentration of ceramics powder. Polyurethane nano-web was characterized by SEM to observe the deposition of ceramics powder on polyurethane nano-web surface. The far-infrared ray emissivity was increased with the concentration of ceramics powder in the nano-web. The far-infrared ray emission power was enhanced with increasing temperature of the samples; however, far-infrared ray emissivity was decreased with increasing temperature because the increase of emission power of ceramic containing nano-web was lower than the emission power of black body one.
KW - ceramics;far-infrared ray;polyurethane nano-web;electrospinning;far-infrared ray emission power;far-infrared ray emissivity
DO -
UR -
ER -
Soya Hong, 이창환 and Jooyong Kim. (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.
Soya Hong, 이창환 and Jooyong Kim. 2010, "Fabrication of Ceramic Particles Deposited Nano-web using Electrospinning Process and Its Far-infrared Ray Emission Property", Textile Coloration and Finishing , vol.22, no.2 pp.118-122.
Soya Hong, 이창환, Jooyong Kim "Fabrication of Ceramic Particles Deposited Nano-web using Electrospinning Process and Its Far-infrared Ray Emission Property" Textile Coloration and Finishing 22.2 pp.118-122 (2010) : 118.
Soya Hong, 이창환, Jooyong Kim. Fabrication of Ceramic Particles Deposited Nano-web using Electrospinning Process and Its Far-infrared Ray Emission Property. 2010; 22(2), 118-122.
Soya Hong, 이창환 and Jooyong Kim. "Fabrication of Ceramic Particles Deposited Nano-web using Electrospinning Process and Its Far-infrared Ray Emission Property" Textile Coloration and Finishing 22, no.2 (2010) : 118-122.
Soya Hong; 이창환; Jooyong Kim. 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.
Soya Hong; 이창환; Jooyong Kim. Fabrication of Ceramic Particles Deposited Nano-web using Electrospinning Process and Its Far-infrared Ray Emission Property. Textile Coloration and Finishing . 2010; 22(2) 118-122.
Soya Hong, 이창환, Jooyong Kim. Fabrication of Ceramic Particles Deposited Nano-web using Electrospinning Process and Its Far-infrared Ray Emission Property. 2010; 22(2), 118-122.
Soya Hong, 이창환 and Jooyong Kim. "Fabrication of Ceramic Particles Deposited Nano-web using Electrospinning Process and Its Far-infrared Ray Emission Property" Textile Coloration and Finishing 22, no.2 (2010) : 118-122.