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Smart Textiles

NPL wins grant for smart textiles research project

The NPL will work with the Coventry University to look at additive techniques for applying conductive tracks to a range of textiles.

10th October 2014

Innovation in Textiles
 |  Teddington

Sports/​Outdoor, Clothing/​Footwear, Medical/Hygiene, Protective

The National Physical Laboratory (NPL) has won a Knowledge Transfer Partnership (KTP) award from Innovate UK and will be partnering with Coventry University to work in the area of smart textiles.

The team will be looking at additive techniques for applying conductive tracks to a range of textiles.  There are numerous applications for the work across the wearable technology sector, for example within health, sport and the military, the NPL reports.

Focus on conductive tracks

“This is a fantastic opportunity to be working on smart textiles and with the ultimate focus on conductive tracks, rather than whole surface coating, there is a real opportunity to see electronics being more easily integrated into clothing in the near future, which has the potential to be really influential in the healthcare and sports industries,” commented Kathryn Wills, KTP Project Associate.

A KTP is a collaborative initiative between a company and a university, which shares knowledge and expertise for an innovative research project with a clear commercial objective. The project benefits from combining academic input with the business know-how to develop successful IP and contribute to the company’s growth.

Introduction of conductivity

There are already methods to produce conductive textiles, such as weaving a conductive yarn into the material or by printing conductive inks onto the fabric surface.

However, according to the NPL, it is more advantageous to treat the fabric in such a way as to introduce conductivity onto the individual fibres within the textile.

KTP Smart Textiles Project team (left to right): John Graves and Andrew Cobley (Coventry University); Kathryn Wills (KTP Associate); Roya Ashayer-Soltani and Chris Hunt (NPL) © National Physical Laboratory

A key goal will be selective metallisation of the textile, i.e. the incorporation of conductive tracks into the textile rather than coating the whole surface, which could lead to circuit designs being incorporated into clothing.

Silver and conductivity

The process of depositing nanoparticulate silver onto fibres has already been developed by NPL, with the resulting fabrics demonstrating good coverage of silver and conductivity, whilst retaining the necessary flexibility for textile applications.

The next step in the additive process will use the metallisation expertise at Coventry University to thicken the conductive layer and develop a robust prototype.

www.npl.co.uk

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