articleNature CommunicationsSep 13, 2017GOLD OA

Soft material for soft actuators

Columbia University

PubMed
Indexed incrossrefdoajpubmed

Abstract

Abstract Inspired by natural muscle, a key challenge in soft robotics is to develop self-contained electrically driven soft actuators with high strain density. Various characteristics of existing technologies, such as the high voltages required to trigger electroactive polymers ( > 1KV), low strain ( < 10%) of shape memory alloys and the need for external compressors and pressure-regulating components for hydraulic or pneumatic fluidicelastomer actuators, limit their practicality for untethered applications. Here we show a single self-contained soft robust composite material that combines the elastic properties of a polymeric matrix and the extreme volume change accompanying liquid–vapor transition. The…

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827
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Authors

3

Topics & keywords

Keywords
  • Actuator
  • Soft robotics
  • Materials science
  • Artificial muscle
  • Shape-memory polymer
  • Fabrication
  • Composite number
  • Composite material
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