Menu Close

What can you do with e-textiles?

What can you do with e-textiles?

The health and beauty industry is also taking advantage of these innovations, which range from drug-releasing medical textiles, to fabric with moisturizer, perfume, and anti-aging properties. Many smart clothing, wearable technology, and wearable computing projects involve the use of e-textiles.

What makes e-textiles unique?

E-textiles make sensors and computers flexible, light, easy to wear and even fashionable. The user doesn’t have to worry about managing cables or wires — most circuits embedded in textiles are around the thickness of a piece of standard paper.

How do e-textiles have a positive impact on society?

Smart textiles offer opportunities to seamlessly monitor the health of those with disease or disabilities (for doctors and loved ones alike), as well as location of children and the elderly through GPS embedded sensors. This can bring great peace of mind to all parties involved.

What are the disadvantages of e-textiles?

It is not 100% waterproof as it can’t be continually worn in the water. Not all medical or healthcare wearable’s come under the scan of medical rules & regulation. There also exists a mechanical resistance. The durability of the materials used is another factor that gets implicated by the harsh environment.

What are some examples of e-textiles?

These include Biotex (Bio-Sensing Textiles to Support Health Management), PROETEX (Protection e-Textiles: MicroNanostructured fibre systems for Emergency-Disaster Wear), OFSETH (Optical Fibre Sensors Embedded into technical Textile for Healthcare).

Why are textiles important?

Textiles help decorate our homes and adorn our bodies. Clothing allows us to create our own identities and plays an important role in cultural rituals and celebrations. Every culture in the world makes use of textiles. The word textiles originally meant woven fabric.

Why do we need smart textiles?

Textiles with gesture control sensors can make our life so much easier. Smart Textiles can help in better & accurate data acquisition in Sports training. Monitoring people who handle or work in hazardous environments. Smart Textiles are also being used in military operations.

What is the history of electronic textiles?

The journey of e-textiles started at the end of the 19th century when people designers and engineers try to combine the electricity within clothing. In 1968, a relationship between apparel and electronics was shown in an exhibition called Body Covering held in the Museum of Contemporary Craft in New York City.

How is e-textiles made?

There are two main ways to make an e-textile: embedded and laminated. Embedded e-textiles mean that the circuit is knit or woven into the textile to become part of the fiber of the cloth. This can also include directly printing a conductive pathway onto a textile to give it conductive properties.

What are the different uses of e textiles?

This is not a question that can be answered simply, as e-textiles have a variety of uses and functions. E-textiles are a foundational technology, meaning they are part of a larger product. There is no one home for them, and they are very accommodating to the specific needs of their users.

Why are electronic textiles a developing research topic?

Interactive electronic textiles (e-textiles) are another developing research topic in the field of wearable technologies due to its suitability for providing comfort and aesthetic to users.

How are textiles used in our daily life?

Our daily life is full of textiles; carpets, sleeping mats, wallpaper, etc. Thus, e-textiles can be used not only for wearable sensors but also for housing materials. Once e-textiles acquire sensing, computational, or communication capabilities, they may enable our living environment to provide information services.

How are electronic textiles related to wearable computers?

Electronic textiles (e-textiles) have evolved from the concept of wearable computers. The wearable electronics and electronic textiles lie at the two ends of a spectrum that ranges from added-on electronics to components integrated with textile yarn to true integration.