Robotik-Materialien Video Members Publications

Biodegradable electrohydraulic actuators for sustainable soft robots

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(A) Schematic of a life cycle of biodegradable electrohydraulic soft actuators. (B) A biodegradable electrohydraulic gripper collects and sorts garbage. (C) A key component of biodegradable electrohydraulic soft actuators are industrially-biodegradable polymer films, which function as electrically-insulating pouches for containing liquid dielectric. (D) (left) A schematic of a biodegradable Peano-HASEL soft actuator, which functions by applying a high voltage across a pair of ionically-conductive gelatin-based electrodes, deforming the liquid-filled biopolymer pouch and inducing a linear contraction. (right) Material characterizations of different types of biodegradable liquid dielectrics and polymer films helped to identify the most promising material candidates for fabricating biodegradable electrohydraulic soft actuators.

Video

Members

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Robotik-Materialien
  • Postdoctoral Researcher
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Robotik-Materialien
  • Postdoctoral Researcher
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Robotik-Materialien
Tenure track professor University of Stuttgart
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Robotik-Materialien
  • Doctoral Researcher
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Robotik-Materialien
  • Intern
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Robotik-Materialien, Physische Intelligenz
Managing Director

Publications

Robotic Materials Article Biodegradable Electrohydraulic Actuators for Sustainable Soft Robots Rumley, E. H., Preninger, D., Shagan-Shomron, A., Rothemund, P., Hartmann, F., Baumgartner, M., Kellaris, N., Stojanovic, A., Yoder, Z., Karrer, B., et al. Science Advances, 9(12), 2023, Ellen H. Rumley and David Preninger were co-first authors, and Christoph Keplinger and Martin Kaltenbrunner were shared corresponding authors. (Published) YouTube video DOI BibTeX