As an aspect of intelligent clothing, e-textile sensors can flexibly sense and transmit information about human bodies and environments. However, difficulties relating to their technology and the variation in textile materials employed in their manufacture still limit their ability to analyze and be applied. The authors’ previous publication deployed a pressure sensor with warp-knitted spacer fabrics, wet-knitted fabrics, Ag-yarns, and Fe-yarns. An equivalent circuit analyzed the resistance behavior with some effects of the Ag-coated twisted yarns. In the present paper, the authors continue to evaluate the correlation model R-ε and the effects of the Fe staple-fiber spun yarns in detail. Together, the two studies provide an extensive unders...
Electrically conductive yarns (ECYs) are gaining increasing applications in woven textile materials,...
By embedding conductive yarns in, or onto, knitted textile fabrics, simple but robust stretch sensor...
Developments in electronic textiles (e-textiles) have focused on integration into remote physiologic...
Electronic textiles, or smart textiles, is a field that is growing due to the opportunities it provi...
Electronic textiles, or smart textiles, is a field that is growing due to the opportunities it provi...
This research study investigates the impact of various insulating textile materials on the performan...
Abstract: In recent years, wearable technologies have attracted great attention in physical and chem...
Abstract: In recent years, wearable technologies have attracted great attention in physical and chem...
Abstract: In recent years, wearable technologies have attracted great attention in physical and chem...
This paper<sup>1</sup> presents an approach for decoding the pressure information exerted over a pie...
This paper presents a study of the sensing properties exhibited by textile-based knitted strain sens...
This research presents an investigation of novel textile-based strain sensors and evaluates their pe...
Fabric sensors are made from knitted conductive yarn and can be used to measure extension in wearabl...
Fabric sensors are made from knitted conductive yarn and can be used to measure extension in wearabl...
By embedding conductive yarns in, or onto, knitted textile fabrics, simple but robust stretch sensor...
Electrically conductive yarns (ECYs) are gaining increasing applications in woven textile materials,...
By embedding conductive yarns in, or onto, knitted textile fabrics, simple but robust stretch sensor...
Developments in electronic textiles (e-textiles) have focused on integration into remote physiologic...
Electronic textiles, or smart textiles, is a field that is growing due to the opportunities it provi...
Electronic textiles, or smart textiles, is a field that is growing due to the opportunities it provi...
This research study investigates the impact of various insulating textile materials on the performan...
Abstract: In recent years, wearable technologies have attracted great attention in physical and chem...
Abstract: In recent years, wearable technologies have attracted great attention in physical and chem...
Abstract: In recent years, wearable technologies have attracted great attention in physical and chem...
This paper<sup>1</sup> presents an approach for decoding the pressure information exerted over a pie...
This paper presents a study of the sensing properties exhibited by textile-based knitted strain sens...
This research presents an investigation of novel textile-based strain sensors and evaluates their pe...
Fabric sensors are made from knitted conductive yarn and can be used to measure extension in wearabl...
Fabric sensors are made from knitted conductive yarn and can be used to measure extension in wearabl...
By embedding conductive yarns in, or onto, knitted textile fabrics, simple but robust stretch sensor...
Electrically conductive yarns (ECYs) are gaining increasing applications in woven textile materials,...
By embedding conductive yarns in, or onto, knitted textile fabrics, simple but robust stretch sensor...
Developments in electronic textiles (e-textiles) have focused on integration into remote physiologic...