Development of Piezoresistive Sensor Yarn ...
Type de document :
Article dans une revue scientifique: Article original
DOI :
URL permanente :
Titre :
Development of Piezoresistive Sensor Yarn to Monitor Local Fabric Elongation
Auteur(s) :
Barthod-Malat, Benjamin [Auteur]
Génie des Matériaux Textiles - ULR 2461 [GEMTEX]
Cochrane, Cédric [Auteur]
Génie des Matériaux Textiles - ULR 2461 [GEMTEX]
Boussu, francois [Auteur]
Génie des Matériaux Textiles - ULR 2461 [GEMTEX]
Génie des Matériaux Textiles - ULR 2461 [GEMTEX]
Cochrane, Cédric [Auteur]
Génie des Matériaux Textiles - ULR 2461 [GEMTEX]
Boussu, francois [Auteur]

Génie des Matériaux Textiles - ULR 2461 [GEMTEX]
Titre de la revue :
Textiles
Nom court de la revue :
Textiles
Numéro :
1
Pagination :
170-184
Éditeur :
MDPI
Date de publication :
2021-07-02
ISSN :
2673-7248
Mot(s)-clé(s) en anglais :
smart textiles
sensor yarn
piezoresistive sensor
intrinsically conducting polymers (ICP)
PEDOT/PSS
high-performance fibre
electromechanical tensile tests
sensor yarn
piezoresistive sensor
intrinsically conducting polymers (ICP)
PEDOT/PSS
high-performance fibre
electromechanical tensile tests
Discipline(s) HAL :
Sciences de l'ingénieur [physics]
Résumé en anglais : [en]
The performance of bulletproof vests is mainly based on the energy absorption capacity of the flexible fibrous reinforcements. To understand the in situ behaviour of these textile structures during a ballistic impact, we ...
Lire la suite >The performance of bulletproof vests is mainly based on the energy absorption capacity of the flexible fibrous reinforcements. To understand the in situ behaviour of these textile structures during a ballistic impact, we find the use of sensor yarns integrated into these fibrous reinforcements to be a non-invasive and reliable solution. Measurements of the dynamic deformation of the sensor yarns will provide a new and useful source of information. The design and manufacturing stages of a sensor yarn, made with the same structural yarns of the fabric, are detailed successively. Then, different batches of sensor yarns were designed, and electromechanical tensile tests were performed in quasi-static mode. These experiments provide encouraging results for the measurement of the deformation of a textile structure subject to a dynamic impact.Lire moins >
Lire la suite >The performance of bulletproof vests is mainly based on the energy absorption capacity of the flexible fibrous reinforcements. To understand the in situ behaviour of these textile structures during a ballistic impact, we find the use of sensor yarns integrated into these fibrous reinforcements to be a non-invasive and reliable solution. Measurements of the dynamic deformation of the sensor yarns will provide a new and useful source of information. The design and manufacturing stages of a sensor yarn, made with the same structural yarns of the fabric, are detailed successively. Then, different batches of sensor yarns were designed, and electromechanical tensile tests were performed in quasi-static mode. These experiments provide encouraging results for the measurement of the deformation of a textile structure subject to a dynamic impact.Lire moins >
Langue :
Anglais
Comité de lecture :
Oui
Audience :
Internationale
Vulgarisation :
Non
Établissement(s) :
Université de Lille
ENSAIT
Junia HEI
ENSAIT
Junia HEI
Collections :
Équipe(s) de recherche :
Mechanics Textile Composites
Multifunctional Textiles and Processes
Multifunctional Textiles and Processes
Date de dépôt :
2025-03-19T22:03:40Z
2025-03-28T10:20:19Z
2025-03-28T10:20:19Z
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