Page 81 - April-May 2021
P. 81

80                World’s first highly absorbent                                                                81

 Noble Biomaterial introduces   nanostructures made from



 durable antimicrobial finish    recycled polyester






 Noble Biomaterials, based in Scranton, Philadelphia,   healthcare, industrial, and emerging wearable
 is launching Ionic+ Durable as a new silver-based   technology markets. The novel solution meets or
 fabric finish that is an effective way to deliver   exceeds the state-of-market performance. While the
 antimicrobial benefits. Noble Biomaterials USA has   application has achieved a 50x wash durability rating,
 announced the release of the new durable   the self-cleaning, odor-eliminating ionized silver will
 antimicrobial finish for textiles. The trade name of the   ensure fewer washes to conserve water, energy, and
 new finish is Ionic+ Durable. The finish is a   natural resources and reduce fabric degradation
 silver-based fabric finish that is a practical,   time.
 reasonable way to deliver antimicrobial benefits. It is
 applied at the finishing stage, allowing for maximum   The self-cleaning, odor-eliminating ionized silver is
 design freedom and production flexibility.   designed to ensure fewer washes to help conserve
 water, energy, and natural resources, as well as
 Noble Biomaterial is a global leader in antimicrobial   reduce fabric degradation over time. The new
 and conductivity finishing solutions for various soft   solution is the result of years of innovation and
 surfaces. The company produces advanced material   research into the benefits of ionic silver, according to
 technologies designed for performance apparel,   Joel Furey, co-founder and chief commercial officer.






 Smart clothes for athletic

 training, rehabilitation,


              Nanofront ultra-fine polyester from recycled materials is the innovation of Teijin Frontier, Japan. These are the
 and health monitoring  World’s first highly absorbent nanostructures made from recycled polyesters. The created capillarity inside the
              structure enhances water absorption and diffusion. Its grip properties result from nano-sized irregularities on
              the fiber surface, which creates friction. In filter materials, its fine pores and high void structure also improve
                                                     its functionalities.
 At the Massachusetts Institute of Technology (MIT),   more typical textile fibers alongside a small amount
 scientists have developed smart clothes for motion   of custom-made functional fibers that sense pressure   Key to the development is new polymer-control and spinning techniques for its proprietary ‘sea-island
 detection to be used in athletic training, rehabilitation,   from the person wearing the garment.  composite-fiber processing technology”. The technology distributes two types of polymers into the fiber’s sea
 and health monitoring. Among the many benefits   and island parts. It then dissolves and removes the sea part using an alkaline treatment, extracting only the
 promised by the smart fabric, the revolution has been   The team's clothes have a range of capabilities. Their   island part as raw yarn.
 the "consumerization of health care." Wearables   socks predict motion by looking at how different
 enable the remote monitoring of a wide range of   sequences of tactile footprints correlate to varying   Teijin Frontier believes this technology will enable it to produce all of its polyester fiber products with recycled
 chronic medical conditions, from diabetes, high   poses as the user transitions from one pose to   raw materials in the future, including sportswear, functional clothing, industrial uniforms, and more. It forecasts
 blood pressure, and congestive heart failure (CHF) to   another. The full-sized vest can also detect the   sales from the development of 300 million yen in 2021 and 800 million yen in 2025. The demand for recycling
 symptoms of disease, discomfort, and stress.  wearers' pose, activity, and texture of the contacted
 surfaces. The scientists feel a coach can use the   raw materials is rapidly increasing. Still, it has been challenging to mass-produce ultra-fine fibers from
 sensor to analyze people's postures and improve   recycled polyester due to the need for high-level polymer control and spinning.
 In 2017, smart fabrics in the medical and health   improvement. An experienced athlete could also use
 segment had a market size of $97 million, according   it to record their posture so that beginners can learn   Teijin Limited is a Japanese chemical, pharmaceutical, and information technology company. Its primary
 to IFAI research. The MIT team has developed a   from them. They even imagine that robots could be   operations are high-performance fibers such as aramid, carbon fibers & composites, healthcare, films, resin &
 range of prototypes, from socks and gloves to a full   trained to know how to do different activities using   plastic processing, polyester fibers, product converting, and IT products. The company is listed on the first
 vest. The team's "tactile electronics" use a mix of   data from the wearables in the long term.  section of the Tokyo Stock Exchange and is a constituent of the Nikkei 225 stock index.


 April/May 2021                                                                          April/May 2021
   76   77   78   79   80   81   82   83   84