Understanding the Washing Damage to Textile ...
Document type :
Article dans une revue scientifique: Article original
DOI :
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Title :
Understanding the Washing Damage to Textile ECG Dry Skin Electrodes, Embroidered and Fabric-Based; set up of Equivalent Laboratory Tests
Author(s) :
Zaman, Shahood Uz [Auteur]
Génie et Matériaux Textiles [GEMTEX]
Tao, Xuyuan [Auteur]
Génie et Matériaux Textiles [GEMTEX]
Cochrane, Cédric [Auteur]
Génie et Matériaux Textiles [GEMTEX]
Koncar, Vladan [Auteur]
Génie et Matériaux Textiles [GEMTEX]
Génie et Matériaux Textiles [GEMTEX]
Tao, Xuyuan [Auteur]
Génie et Matériaux Textiles [GEMTEX]
Cochrane, Cédric [Auteur]
Génie et Matériaux Textiles [GEMTEX]
Koncar, Vladan [Auteur]
Génie et Matériaux Textiles [GEMTEX]
Journal title :
Sensors
Volume number :
20
Publisher :
MDPI
Publication date :
2020-02-26
ISSN :
1424-8220
English keyword(s) :
skin electrode
launderability
washability
E-textile
ECG
wash forces
launderability
washability
E-textile
ECG
wash forces
HAL domain(s) :
Sciences de l'ingénieur [physics]
English abstract : [en]
Reliability and washability are major hurdles facing the e-textile industry nowadays. The main fear behind the product’s rejection is the inability to ensure its projected life span. The durability of e-textiles is based ...
Show more >Reliability and washability are major hurdles facing the e-textile industry nowadays. The main fear behind the product’s rejection is the inability to ensure its projected life span. The durability of e-textiles is based on an approximate lifetime of both the electronics and textiles integrated into the product. A detailed analysis of the wash process and the possibility of predicting product behavior are key factors for new standards implementation. This manuscript is focused on the washability issues of different types of woven, knitted, and embroidered, textile-based ECG electrodes. These electrodes are used without the addition of any ionic gel to the skin to reduce impedance. They were subjected to up to 50 wash cycles with two different types of wash processes, and changes in surface resistance, as well as the quality of ECG waves, were observed To investigate the wash damages in detail, the proposed mechanical (Martindale and Pilling box) and chemical test methods were investigated. The electrodes which increased resistance after washing showed the same trend in the proposed test methods. Copper-based electrodes suffered the most severe damage and increased resistance, as was also visible in an SEM analysis. These proposed test methods can be used to predict robustness behavior without washing.Show less >
Show more >Reliability and washability are major hurdles facing the e-textile industry nowadays. The main fear behind the product’s rejection is the inability to ensure its projected life span. The durability of e-textiles is based on an approximate lifetime of both the electronics and textiles integrated into the product. A detailed analysis of the wash process and the possibility of predicting product behavior are key factors for new standards implementation. This manuscript is focused on the washability issues of different types of woven, knitted, and embroidered, textile-based ECG electrodes. These electrodes are used without the addition of any ionic gel to the skin to reduce impedance. They were subjected to up to 50 wash cycles with two different types of wash processes, and changes in surface resistance, as well as the quality of ECG waves, were observed To investigate the wash damages in detail, the proposed mechanical (Martindale and Pilling box) and chemical test methods were investigated. The electrodes which increased resistance after washing showed the same trend in the proposed test methods. Copper-based electrodes suffered the most severe damage and increased resistance, as was also visible in an SEM analysis. These proposed test methods can be used to predict robustness behavior without washing.Show less >
Language :
Anglais
Audience :
Internationale
Popular science :
Non
Comment :
This article belongs to the Special Issue ECG Sensors.
Administrative institution(s) :
Université de Lille
ENSAIT
Junia HEI
ENSAIT
Junia HEI
Collections :
Submission date :
2023-06-20T01:44:47Z
2024-03-15T16:37:06Z
2024-03-15T16:37:06Z
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