Page 69 - August-September-2018
P. 69

68  T-shirt instead of



 Whats New  Research into wearable technology began to   operate touchscreens, for instance.

 USB stick







 draw interest over 30 years ago. Certain smart
 By magnetising the yarn in the shirt sleeve, the
 textiles have come into the market over the years,
 particularly in the areas of medicine and sport.
 researchers were able to integrate an access
 Many smart textiles already available on the
 be opened by moving the sleeve in front of the
 market work via the integration of conventional
 mobile devices. However, these inflexible
 control panel. Data saved in the textile by
 components oftentimes limit the functionality and   code used to access security zones. Doors can
 polarising the conductive yarn can be read with a
 user-friendliness of the textiles and present the   magnetometer. With this technology, people will
 wearer with a real problem, for example when   be able to carry large amounts of data directly on
 cleaning.  their bodies.
 Researchers from the University of Washington   Integrating sensors, electrically conductive yarns,
 were recently successful in developing an   or other unusual materials when manufacturing
 intelligent textile that works without any external   smart textiles creates great challenges for
 power source, meaning it can be washed and   stitch-creating components. Groz-Beckert
 ironed: a standard shirt that functions as data   provides needles and system parts for a number
 storage. A conductive yarn was used for this   of ambitious technologies and collaborations to
 purpose, which is already used in gloves to   develop and implement new ideas.







 Composite bridge structures



 of the length 6.6km




 Russia plans to use composite materials in the design and building of some unique structures. As part of
 these plans, composite bridge beams with specific weight and efficiency advantages are currently being
 perfected, to be used in the building of extended-length bridges.

 This offer numerous benefits, experts say, because the material is immune to both frost damage and
 de-icing salts. Another benefit is significantly reduced weight. A glass fibre bridge has only about 40% of
 the weight of a steel composite and less than 30% of that of a pre-stressed concrete bridge. In addition, it
 can be prefabricated in significantly larger dimensions and lifted into position by crane.

 Russia will be the first to achieve composite bridge structures of such length. Composite beams are the
 only possible way to organise the movement of high-speed trains. Intensive efforts to develop glass fibre
 composite bridges are currently underway in the US, Japan, Switzerland and the Netherlands in particular,
 where they are now standard.



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