4.3 Article

Design framework for a seamless smart glove using a digital knitting system

期刊

FASHION AND TEXTILES
卷 8, 期 1, 页码 -

出版社

SPRINGER
DOI: 10.1186/s40691-020-00237-2

关键词

Framework for wearable electronics; Seamless glove sensor; Digital knitting CAD; CAM system; Finger motion detection

资金

  1. National Research Foundation of Korea (NRF) - Korean Government [NRF-2018R1A2B6005220]
  2. research fund of Hanyang University (HY-2019)
  3. National Research Foundation of Korea [4199990114300, 5199990314476] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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The research proposed a design and development framework for a seamless glove sensor system using digital knitting fabrication, meeting the performance requirements of glove sensors and successfully developing two prototypes. This method provides a promising strategy for the future development of wearable electronic textile systems.
The wearable electronics integrated with textile-based devices is a promising strategy to meet the requirements of human comfort as well as electrical performances. This research presents a design and development framework for a seamless glove sensor system using digital knitting fabrication. Based on the performance requirements of glove sensors for controlling a prosthetic hand, desirable design components include electrical conductivity, comfort, formfit, electrical sensitivity, and customizable design. These attributes are determined and achieved by applying appropriate materials and fabrication technologies. In this study, a digital knitting CAD/CAM system is utilized to meet the desired performance criteria, and two prototypes of the seamless glove sensor systems are successfully developed for the detection of both human and robotic finger motions. This digital knitting system will provide considerable potential for customized design development as well as a sustainable production process. This structured, systematic approach could be adapted in the future development of wearable electronic textile systems.

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