4.8 Article

Chained Iron Microparticles for Directionally Controlled Actuation of Soft Robots

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 9, Issue 13, Pages 11895-11901

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsami.7b01209

Keywords

magnetic particles; chains; elastomer; anisotropy; actuation; lifter; valve; pump

Funding

  1. Research Triangle MRSEC REU Program (National Science Foundation) [DMR-1121107]
  2. National Science Foundation [DMR-1056653]
  3. Direct For Mathematical & Physical Scien
  4. Division Of Materials Research [1056653] Funding Source: National Science Foundation

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Magnetic field-directed self-assembly of magnetic particles in chains is useful for developing directionally responsive materials for applications in soft robotics. Using materials with greater complexity allows advanced functions, while still using simple device architectures. Elastomer films containing chained magnetic microparticles were prepared, through solVeut,,casting and formed into magnetically actuated lifters;, accordions, valves, and pumps. Chaining both enhances actuation and imparts a directional response. Cantilevers used as lifters were able to lift up to 50 times the mass of the polymer film. We introduce the specific torque, the torque per field per mass of magnetic particles, as a figure of merit for assessing and comparing the performance of lifters and related devices. Devices in this work generated Specific torques of 68 Nm/kgT, which is significantly higher than in previously reported actuators. Applying magnetic fields to folded accordion structures caused extension and compression, depending on the accordion's orientation. In peristaltic pumps comprised of composite tubes containing embedded chains, magnetic fields caused a section of the tube to pinch closed where the field Was Applied. These results will facilitate both the further development of soft robots based on chained magnetic particles and efforts to engineer materials with higher specific torque.

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