3D Warp Interlock Fabric Structure and ...
Type de document :
Article dans une revue scientifique: Article original
URL permanente :
Titre :
3D Warp Interlock Fabric Structure and their Applications in Soft and Hard Armour Protections
Auteur(s) :
Boussu, francois [Auteur]
École nationale supérieure des arts et industries textiles [ENSAIT]
Génie des Matériaux Textiles - ULR 2461 [GEMTEX]
Abtew, Mulat Alubel [Auteur]
Bahir Dar University [BDU]
École nationale supérieure des arts et industries textiles [ENSAIT]
Génie des Matériaux Textiles - ULR 2461 [GEMTEX]
Bruniaux, P. [Auteur]
École nationale supérieure des arts et industries textiles [ENSAIT]
Génie des Matériaux Textiles - ULR 2461 [GEMTEX]
École nationale supérieure des arts et industries textiles [ENSAIT]
Génie des Matériaux Textiles - ULR 2461 [GEMTEX]
Abtew, Mulat Alubel [Auteur]
Bahir Dar University [BDU]
École nationale supérieure des arts et industries textiles [ENSAIT]
Génie des Matériaux Textiles - ULR 2461 [GEMTEX]
Bruniaux, P. [Auteur]
École nationale supérieure des arts et industries textiles [ENSAIT]
Génie des Matériaux Textiles - ULR 2461 [GEMTEX]
Titre de la revue :
Applied Composite Materials
Nom court de la revue :
Appl. Compos. Mater.
Numéro :
-
Pagination :
-
Date de publication :
2021-09-04
ISSN :
0929-189X
Mot(s)-clé(s) en anglais :
Protective solution
Ballistic impact resistance
Structural composite
Biaxial structure
Spacer fabric
3D warp interlock fabrics
Ballistic impact resistance
Structural composite
Biaxial structure
Spacer fabric
3D warp interlock fabrics
Discipline(s) HAL :
Sciences de l'ingénieur [physics]
Résumé en anglais : [en]
Textile materials can be used as a soft solution to protect the human body of the soldier and as a hard solution to provide more efficient armour for various types of vehicles. Their advantages are numerous in terms of ...
Lire la suite >Textile materials can be used as a soft solution to protect the human body of the soldier and as a hard solution to provide more efficient armour for various types of vehicles. Their advantages are numerous in terms of performance versus weight, forming ability and availability of different types of high-performance yarns. Special attention has been given to the 3D warp interlock fabrics structure in the above applications. For the soft protection application, a body armour adapted to the female breast was designed based on different layers of 3D warp interlock fabric made of para-aramid yarns. A compromise was found between the formability criterion, which facilitates the adaptation of the body armour to the body, and the kinetic energy absorption in ballistic impact, which tends to minimize the blunt trauma criterion. For hard protection, a new vehicle up-armour was found to protect the interior from the high-velocity impact of projectiles. A compromise was also found to optimize the kinetic energy absorption in this high-velocity impact and the capacity of dynamic deformation of the protection solution to avoid structural damage and keep the integrity of the armour solution safe.Lire moins >
Lire la suite >Textile materials can be used as a soft solution to protect the human body of the soldier and as a hard solution to provide more efficient armour for various types of vehicles. Their advantages are numerous in terms of performance versus weight, forming ability and availability of different types of high-performance yarns. Special attention has been given to the 3D warp interlock fabrics structure in the above applications. For the soft protection application, a body armour adapted to the female breast was designed based on different layers of 3D warp interlock fabric made of para-aramid yarns. A compromise was found between the formability criterion, which facilitates the adaptation of the body armour to the body, and the kinetic energy absorption in ballistic impact, which tends to minimize the blunt trauma criterion. For hard protection, a new vehicle up-armour was found to protect the interior from the high-velocity impact of projectiles. A compromise was also found to optimize the kinetic energy absorption in this high-velocity impact and the capacity of dynamic deformation of the protection solution to avoid structural damage and keep the integrity of the armour solution safe.Lire moins >
Langue :
Anglais
Comité de lecture :
Oui
Audience :
Internationale
Vulgarisation :
Non
Établissement(s) :
Université de Lille
ENSAIT
Junia HEI
ENSAIT
Junia HEI
Collections :
Date de dépôt :
2023-06-20T11:54:07Z
2024-03-21T08:55:04Z
2024-03-21T08:55:04Z
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- s10443-021-09955-2.pdf
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