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Evaluation of Bamboo Charcoal/Stainless Steel/TPU Composite Woven Fabrics
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  • Evaluation of Bamboo Charcoal/Stainless Steel/TPU Composite Woven Fabrics
  • Evaluation of Bamboo Charcoal/Stainless Steel/TPU Composite Woven Fabrics
저자명
Lou. Ching-Wen,Lin. Jia-Horng
간행물명
Fibers and polymers
권/호정보
2011년|12권 4호|pp.514-520 (7 pages)
발행정보
한국섬유공학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Composite woven fabric satisfies what people require. Bamboo charcoal (BC) has been identified as a multifunctional material that has far-infrared ray, anions, deodorization and etc. BC fibers and yarns were made of bamboo charcoal powders and have further become a pervasive materials used in textile industry. In this study, cotton yarns, stainless steel/cotton (SS/C) complex yarn, bamboo charcoal/cotton (BC/C) complex yarns were woven into the plain, twill and Dobby composite woven fabrics. The warp yarn was composed of cotton yarns, and the weft yarn was made up of BC/C and SS/C complex yarns with a picking ratio of 1:1 and 3:1. Thermoplastic polyurethanes (TPU) film was then attached to the composite woven fabrics, forming the BC/SS/TPU composite woven fabrics. Tests of electromagnetic shielding effectiveness (EMSE), far-infrared emissivity, anions, water resistance, and water vapor permeability measured the single-layer, two-layer and four-layer composite woven fabrics, obtaining a far-infrared emissivity of 0.95 by 39.8 counts per minute, an anion count of 149 amount/cc, an EMSE of -11.87 dB under frequency of 900 MHz, a surface resistivity of $8{ imes}10^{-6};{Omega}$/square, a water resistance of -8219 $mmH_2O$, and water vapor permeability of 989 g/$m^2{cdot}h$ and 319 g/$m^2{cdot}24$ h in accordance with JIS L 1099 A1 and ASTM E96 BW.