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Bionic Humans Using EAP as Artificial Muscles Reality and Challenges

Дата: Декабрь 10th, 2005 Автор:
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  • Тип контента: Научная статья
  • Номер документа: 6536
  • Название документа: Bionic Humans Using EAP as Artificial Muscles Reality and Challenges
  • Номер (DOI, IBSN, Патент): Не заполнено
  • Изобретатель/автор: Yoseph Bar-Cohen
  • Правопреемник/учебное заведение: Jet Propulsion Laboratory/Caltech
  • Дата публикации документа: 2005-12-10
  • Страна опубликовавшая документ: США
  • Язык документа: Английский
  • Наименование изделия: Не заполнено
  • Источник: BIONIC
  • Вложения: Да
  • Аналитик: Глаголева Елена

217
BIONIC
For many years, the idea of a human with bionic mus-cles immediately conjures up science fiction images of a TV series superhuman character that was implanted with bionic muscles and portrayed with strength and speed far superior to any normal human. As fantastic as this idea may seem, recent developments in electroactive polymers (EAP) may one day make such bionics possible. Polymers that exhibit large displacement in response to stimulation that is other than elec-trical signal were known for many years. Initially, EAP received relatively little attention due to their limited actuation capability. However, in the recent years, the view of the EAP materials has changed due to the introduction of effective new materials that significantly surpassed the capability of the widely used piezoelectric polymer, PVDF. As this technology continues to evolve, novel mechanisms that are biolo-gically inspired are expected to emerge. EAP materials can potentially provide actuation with lifelike res-ponse and more flexible configurations. While further improvements in performance and robustness are still needed, there already have been several reported successes. In recognition of the need for cooperation in this multidisciplinary field, the author initiated and organized a series of international forums that are leading to a growing number of research and development projects and to great advances in the field. In 1999, he challenged the worldwide science and engineering community of EAP experts to develop a robotic arm that is actuated by artificial muscles to win a wrestling match against a human opponent. In this pa-per, the field of EAP as artificial muscles will be reviewed covering the state of the art, the challenges and the vision for the progress in future years.

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