Page 79 - April-May-2017
P. 79

E-gloves to protect


 workers from dangerous


 vibration levels



 Nottingham Trent University is developing gloves   appear like a normal pair of worker’s gloves to the
 embedded with tiny sensors to help protect   naked eye and be washed and worn without any
 construction workers from exposure to vibration. The   damage to the technology.
 technology aims to alert wearers to when they
 experience vibrations likely to cause conditions such   Sensors to be tested as part of the research include
 as vibration white finger and carpal tunnel   vibration sensors which are only two millimetres long
 syndrome.  and accelerometers. They will be encapsulated in
 micro pods before being embedded into the yarns
 During the past decade, more than 10,000 claims   which are knitted into gloves. When a dangerous
 have been made for vibration white finger and carpal   level of exposure to vibrations is about to be experi-
 tunnel syndrome, according to the Health and Safety   enced, a worker is alerted to stop work.
 Executive (HSE). Workers at risk are those who
 regularly use power tools such as concrete break-  “By lowering the risk of exposure to dangerous
 ers, sanders, grinders, hammer drills, chainsaws,   levels of vibrations, we can help improve the lives of
 hedge trimmers, powered mowers and more.  thousands of construction workers around the world
 by helping prevent them develop what can become
 Sensors will be encapsulated in micro pods before   permanent industrial diseases,” said Dr Theodore
 being embedded into the yarns. The e-gloves being   Hughes-Riley, a research fellow at the university who
 developed by Nottingham Trent University would   is developing the technology.




 This will bring to UMass Lowell the capability to
 fabricate shaped fibres which will provide a step
 change in functionality compared to traditional fibres
 and fabrics. The total market for traditional
 engineered textiles is forecast to reach $84 billion in
 2020 and new engineered textiles developed at
 UMass Lowell could address over 10% of the
 Multi-functional   available market.

 melt-spinning   UMass is a five-campus public university system, recognised
 as a model of excellence for public universities.
 system for UMass  Researchers at UMass Lowell, including Stephen


 Johnston and Javier Vera-Sorroche, are exploring
 An FET-100 Series multifunctional laboratory melt   properties such as high temperature, high strength,
 spinning system has been supplied to the University   flame retardance, high conductivity, and super
 of Massachusetts (UMass) by Leeds-based Fibre   omniphobicity.
 Extrusion Technology (FET).
 The inherent flexibility and versatility of the system will
 The installation was configured with a bicomponent   allow future adaptations, such as FET-102 Nonwoven
 FET-100 extrusion module, which is capable of   or FET-103 Monofilament, depending on future
 processing a wide range of polymers, coupled to a   research requirements. This system design appeals
 FET-101 Multifilament drawing and winding system   to many end-users, not only allowing for upgrade in
 capable of processing a range of multifilament yarns.  process capability but also for staged investment.
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