Literature DB >> 25264492

Double-Acting Sleeve Muscle Actuator for Bio-Robotic Systems.

Hao Zheng1, Xiangrong Shen1.   

Abstract

This paper presents a new type of muscle-like actuator, namely double-acting (DA) sleeve muscle actuator, which is suitable for the actuation of biologically-inspired and biomedical robotic systems, especially those serving human-assistance purposes (prostheses, orthoses, etc.). Developed based on the traditional pneumatic muscle actuator, the new DA sleeve muscle incorporates a unique insert at the center. With the insert occupying the central portion of the internal volume, this new actuator enjoys multiple advantages relative to the traditional pneumatic muscle, including a consistent increase of force capacity over the entire range of motion, and a significant decrease of energy consumption in operation. Furthermore, the insert encompasses an additional chamber, which generates an extension force when pressurized. As such, this new actuator provides a unique bi-directional actuation capability, and, thus, has a potential to significantly simplify the design of a muscle actuator-powered robotic system. To demonstrate this new actuator concept, a prototype has been designed and fabricated, and experiments conducted on this prototype demonstrated the enhanced force capacity and the unique bi-directional actuation capability.

Entities:  

Keywords:  artificial muscle; muscle-like actuator; robotic actuator

Year:  2013        PMID: 25264492      PMCID: PMC4174418          DOI: 10.3390/act2040129

Source DB:  PubMed          Journal:  Actuators        ISSN: 2076-0825


  2 in total

1.  An ankle-foot orthosis powered by artificial pneumatic muscles.

Authors:  Daniel P Ferris; Joseph M Czerniecki; Blake Hannaford
Journal:  J Appl Biomech       Date:  2005-05       Impact factor: 1.833

2.  A pneumatically powered knee-ankle-foot orthosis (KAFO) with myoelectric activation and inhibition.

Authors:  Gregory S Sawicki; Daniel P Ferris
Journal:  J Neuroeng Rehabil       Date:  2009-06-23       Impact factor: 4.262

  2 in total

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