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서지반출
Control of IPMC-based Artificial Muscle for Myoelectric Hand Prosthesis
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  • Control of IPMC-based Artificial Muscle for Myoelectric Hand Prosthesis
  • Control of IPMC-based Artificial Muscle for Myoelectric Hand Prosthesis
저자명
Lee. Myoung-Joon,Jung. Sung-Hee,Moon. Inhyuk,Lee. Sukmin,Mun. Mu-Seong
간행물명
Journal of biomedical engineering research : the official journal of the Korean Society of Medical & Biological Engineering
권/호정보
2005년|26권 5호|pp.257-264 (8 pages)
발행정보
대한의용생체공학회
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정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
서지반출

기타언어초록

This paper proposes an ionic polymer metal composite (IPMC) based artificial muscle to be applicable to the Myoelectric hand prosthesis. The IPMC consists of a thin polymer membrane with metal electrodes plated chemically on both faces, and it is widely applying to the artificial muscle because it is driven by relatively low input voltage. The control commands for the IPMC-based artificial muscle is given by electromyographic (EMG) signals obtained from human forearm. By an intended contraction of the human flexor carpi ulnaris and extensor carpi ulnaris muscles, we investigated the actuation behavior of the IPMC-based artificial muscle. To obtain higher actuation force of the IPMC, the single layered as thick as $800[{mu}m]$ or multi-layered IPMC of which each layer can be as thick as $178[{mu}m]$ are prepared. As a result, the bending force was up to the maximum 12[gf] from 1[gf] by actuating the single layered IPMC with $178[{mu}m]$, but the bending displacement was reduced to 6[mm] from 30[mm]. The experimental results using an implemented IPMC control system show a possibility and a usability of the bio-mimetic artificial muscle.