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Evaluating the fabric performance and antibacterial properties of 3-D piezoelectric spacer fabric

Authors :
Susanta Sinha Roy
Tahir Shah
Derman Vatansever Bayramol
Amrita Dubey
Navneet Soin
Ravi Kant Upadhyay
Richa Priyadarshini
Subhash Anand
Source :
The Journal of The Textile Institute. 109:1613-1619
Publication Year :
2018
Publisher :
Informa UK Limited, 2018.

Abstract

The increasing need of on-demand power for enabling portable low-power devices and sensors has necessitated work in novel energy harvesting materials and devices. In a recent work, we demonstrated the production and suitability of three-dimensional (3-D) spacer all fibre piezoelectric textiles for converting mechanical energy into electrical energy for wearable and technical applications. The current work investigates the textile performance properties of these 3-D piezoelectric fabrics including porosity, air permeability, water vapour transmission and bursting strength. Furthermore, as these textiles are intended for wearable applications, we have assessed their wear abrasion and consequently provide surface resistance measurements which can affect the lifetime and efficiency of charge collection in the piezoelectric textile structures. The results show that the novel smart fabric with a measured porosity of 68% had good air (1855l/m(2)/s) and water vapour permeability (1.34g/m(2)/day) values, good wear abrasion resistance over 60,000 rotations applied by a load of 12kPa and bursting strength higher than 2400kPa. Moreover, the antibacterial activity of 3-D piezoelectric fabrics revealed that owing to the use of Ag/PA66 yarns, the textiles exhibit excellent antibacterial activity against not only Gram-negative bacteria E. coli but they are also capable of killing antibiotic methicillin-resistant bacteria S. aureus.

Details

ISSN :
17542340 and 00405000
Volume :
109
Database :
OpenAIRE
Journal :
The Journal of The Textile Institute
Accession number :
edsair.doi.dedup.....d2b55c7addbc2e14dd7c68996aba6130
Full Text :
https://doi.org/10.1080/00405000.2018.1437113