Characterization based on the thermal capabilities of metallized fabrics equipped with hybrid conductive yarns for protective clothing

Electronic textiles are recognized for their conductive characteristics in various fields of research including medicine, communications, power and for the development of protective clothing. Out of the several types of conductive textile available, multi-component yarns and fabrics, produced from c...

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發表在:Journal of the Textile Institute
主要作者: 2-s2.0-85041137048
格式: Article
語言:English
出版: Taylor and Francis Ltd. 2018
在線閱讀:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85041137048&doi=10.1080%2f00405000.2017.1423007&partnerID=40&md5=fa966874d922992dffea39e7264594c2
id Asghar A.; Ahmad M.R.; Yahya M.F.; Hassan S.Z.U.; Kashif M.
spelling Asghar A.; Ahmad M.R.; Yahya M.F.; Hassan S.Z.U.; Kashif M.
2-s2.0-85041137048
Characterization based on the thermal capabilities of metallized fabrics equipped with hybrid conductive yarns for protective clothing
2018
Journal of the Textile Institute
109
11
10.1080/00405000.2017.1423007
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85041137048&doi=10.1080%2f00405000.2017.1423007&partnerID=40&md5=fa966874d922992dffea39e7264594c2
Electronic textiles are recognized for their conductive characteristics in various fields of research including medicine, communications, power and for the development of protective clothing. Out of the several types of conductive textile available, multi-component yarns and fabrics, produced from continuous copper filament as spiral covering on hybrid cover yarns, have never been investigated for their thermal capabilities. In this study, characterization based on the thermal properties for conventional copper core yarn’s fabric and newly developed copper cover yarn’s fabrics was carried out. The results demonstrate better conductivity of copper cover yarn’s fabrics as compared to the copper core conventional fabrics, which is attributed to its better conduction due to greater percentage of copper and direct contact between the heat flux transducers. With the higher porosity values for the newly developed fabric, the liquid water, water vapour and air transport capabilities, which are key aspects of thermal comfort, significantly improved. © 2018, © 2018 The Textile Institute.
Taylor and Francis Ltd.
405000
English
Article

author 2-s2.0-85041137048
spellingShingle 2-s2.0-85041137048
Characterization based on the thermal capabilities of metallized fabrics equipped with hybrid conductive yarns for protective clothing
author_facet 2-s2.0-85041137048
author_sort 2-s2.0-85041137048
title Characterization based on the thermal capabilities of metallized fabrics equipped with hybrid conductive yarns for protective clothing
title_short Characterization based on the thermal capabilities of metallized fabrics equipped with hybrid conductive yarns for protective clothing
title_full Characterization based on the thermal capabilities of metallized fabrics equipped with hybrid conductive yarns for protective clothing
title_fullStr Characterization based on the thermal capabilities of metallized fabrics equipped with hybrid conductive yarns for protective clothing
title_full_unstemmed Characterization based on the thermal capabilities of metallized fabrics equipped with hybrid conductive yarns for protective clothing
title_sort Characterization based on the thermal capabilities of metallized fabrics equipped with hybrid conductive yarns for protective clothing
publishDate 2018
container_title Journal of the Textile Institute
container_volume 109
container_issue 11
doi_str_mv 10.1080/00405000.2017.1423007
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85041137048&doi=10.1080%2f00405000.2017.1423007&partnerID=40&md5=fa966874d922992dffea39e7264594c2
description Electronic textiles are recognized for their conductive characteristics in various fields of research including medicine, communications, power and for the development of protective clothing. Out of the several types of conductive textile available, multi-component yarns and fabrics, produced from continuous copper filament as spiral covering on hybrid cover yarns, have never been investigated for their thermal capabilities. In this study, characterization based on the thermal properties for conventional copper core yarn’s fabric and newly developed copper cover yarn’s fabrics was carried out. The results demonstrate better conductivity of copper cover yarn’s fabrics as compared to the copper core conventional fabrics, which is attributed to its better conduction due to greater percentage of copper and direct contact between the heat flux transducers. With the higher porosity values for the newly developed fabric, the liquid water, water vapour and air transport capabilities, which are key aspects of thermal comfort, significantly improved. © 2018, © 2018 The Textile Institute.
publisher Taylor and Francis Ltd.
issn 405000
language English
format Article
accesstype
record_format scopus
collection Scopus
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