Robotic Materials

Pneumatic Networks for Soft Robotics that Actuate Rapidly

2014

Article

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Soft robots actuated by inflation of a pneumatic network (a “pneu-net”) of small channels in elastomeric materials are appealing for producing sophisticated motions with simple controls. Although current designs of pneu-nets achieve motion with large amplitudes, they do so relatively slowly (over seconds). This paper describes a new design for pneu-nets that reduces the amount of gas needed for inflation of the pneu-net, and thus increases its speed of actuation. A simple actuator can bend from a linear to a quasi-circular shape in 50 ms when pressurized at ΔP = 345 kPa. At high rates of pressurization, the path along which the actuator bends depends on this rate. When inflated fully, the chambers of this new design experience only one-tenth the change in volume of that required for the previous design. This small change in volume requires comparably low levels of strain in the material at maximum amplitudes of actuation, and commensurately low rates of fatigue and failure. This actuator can operate over a million cycles without significant degradation of performance. This design for soft robotic actuators combines high rates of actuation with high reliability of the actuator, and opens new areas of application for them.

Author(s): Bobak Mosadegh and Panagiotis Polygerinos and Christoph Keplinger and Sophia Wennstedt and Robert F Shepherd and Unmukt Gupta and Jongmin Shim and Katia Bertoldi and Conor J Walsh and George M Whitesides
Journal: Advanced Functional Materials
Volume: 24
Number (issue): 15
Pages: 2163--2170
Year: 2014
Month: April

Department(s): Robotic Materials
Bibtex Type: Article (article)
Paper Type: Journal

DOI: 10.1002/adfm.201303288
State: Published

BibTex

@article{Keplinger14-AFM-PneumaticNetworks,
  title = {Pneumatic Networks for Soft Robotics that Actuate Rapidly},
  author = {Mosadegh, Bobak and Polygerinos, Panagiotis and Keplinger, Christoph and Wennstedt, Sophia and Shepherd, Robert F and Gupta, Unmukt and Shim, Jongmin and Bertoldi, Katia and Walsh, Conor J and Whitesides, George M},
  journal = {Advanced Functional Materials},
  volume = {24},
  number = {15},
  pages = {2163--2170},
  month = apr,
  year = {2014},
  doi = {10.1002/adfm.201303288},
  month_numeric = {4}
}