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카본나노튜브/폴리에스터 유연 발열 직물의 제조와 나노 규모의 전도성 망이 발열 특성에 미치는 영향 연구SWNT Coated PET Fabric Heaters with Stable Electrothermal Response from CMC/SWNT Conductive Network Fabrics Manufactured with PBO/m-aramid/SiC Fibers and Thermal Protection Performance Simulation

Other Titles
SWNT Coated PET Fabric Heaters with Stable Electrothermal Response from CMC/SWNT Conductive Network Fabrics Manufactured with PBO/m-aramid/SiC Fibers and Thermal Protection Performance Simulation
Authors
강동준신환수이학봉정우재이현후한태희
Issue Date
Oct-2021
Publisher
한국섬유공학회
Keywords
electrothermal materials; carbon nanotubes; wearable heating fabric; carboxymethylcellulose
Citation
한국섬유공학회지, v.58, no.5, pp.267 - 273
Indexed
KCI
Journal Title
한국섬유공학회지
Volume
58
Number
5
Start Page
267
End Page
273
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/140637
DOI
10.12772/TSE.2021.58.267
ISSN
1225-1089
Abstract
Single-walled carbon nanotubes (SWNTs) are effectively dispersed in a water medium using carboxymethyl cellulose (CMC) as a dispersant and coated onto polyethylene terephthalate (PET) fabric via a dip-coating process. According to the weight percent of the CMC to carbon nanotubes (CNTs), the coating evenness on the PET fabric surface, dispersibility, and the washing fastness of the SWNT dispersant were changed and evaluated using ultraviolet-visible (UV-Vis) spectrometry. At the optimized ratio between the CMC and SWNT, the coated PET fabric exhibited higher electrical conductivity with a more uniform resistance deviation value and a stable heating aspect in the infrared (IR) image, compared with the bare SWNT-coated fabric. A specific observation of the coated fabric surface revealed that the CMC/SWNT network formed on the fabric surface connects each fibril by adding a parallel conductive pathway for the applied electrical flow. In addition, this additive pathway can release the heat concentration, which grants the fabric heater heat stability. The proposed fabric heater shows stable performance during the bending test. After 1 hour of performing the ON/OFF test, 11.9 oC/s of the heating rate shows no changes in the surface temperature. This study demonstrates a highly stable fabric heater for heating sheets and wearable heating garments.
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