4.7 Article

Low-voltage textile-based wearable heater systems fabricated by printing reactive silver inks

期刊

SENSORS AND ACTUATORS A-PHYSICAL
卷 322, 期 -, 页码 -

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.sna.2021.112610

关键词

Electric conductive textiles; Printed electronics; Fabric heater; Inkjet printing; Reactive silver ink

资金

  1. Research Fund of the Erciyes University [FDK20188598]
  2. TUBITAK (Scientific and Technical Research Council of Turkey) priority areas doctoral scholarship program

向作者/读者索取更多资源

In this study, a fabric with heating feature was designed by printing particle-free silver inks on textiles, producing a low-voltage and light-weight fabric heater in wearable form. The results indicated that the heater showed excellent heating performance with low voltage levels, reaching 55 degrees C in a short time (<10 s), and exhibited durable and robust heating performance with conductive printed electrodes.
The usage areas of textile materials are expanding day by day and provide different comfort features to the user. In this study, it was focused on designing a fabric with heating feature. By the help of printing particle-free silver inks on textiles, a low-voltage and light-weight fabric heater was produced in wearable form using a low-cost fabrication process. To test the heating properties of the produced fabrics, a computer controlled electronic circuit was designed and implemented. The results proved that the heater designed in this work shows a very good heating performance with low voltage levels, after reaching 55 degrees C in a short time (<10 s). The heating and cooling patterns exhibit very similar behavior. Moreover, the fabrics with the conductive printed electrodes show durable and robust heating performance in different shapes and voltage levels. One of the most important advantages of this fabric heater is safety, based on the low voltage operation and faster cooling than heating. In addition, this fabric heater has the advantage of being able to be raised to high temperatures with low potential differences. (C) 2021 Elsevier B.V. All rights reserved.

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