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Phenomena of nonlinear oscillation and special resonance of a dielectric elastomer minimum energy structure rotary joint

  • Jianwen Zhao*
  • , Junyang Niu
  • , David McCoul
  • , Zhi Ren
  • , Qibing Pei
  • *Corresponding author for this work
  • Harbin Institute of Technology Weihai
  • University of California at Los Angeles

Research output: Contribution to journalArticlepeer-review

Abstract

The dielectric elastomer minimum energy structure can realize large angular deformations by a small voltage-induced strain of the dielectric elastomer, so it is a suitable candidate to make a rotary joint for a soft robot. Driven with an alternating electric field, the joint deformation vibrational frequency follows the input voltage frequency. However, the authors find that if the rotational inertia increases such that the inertial torque makes the frame deform over a negative angle, then the joint motion will become complicated and the vibrational mode will alter with the change of voltage frequency. The vibration with the largest amplitude does not occur while the voltage frequency is equal to natural response frequency of the joint. Rather, the vibrational amplitude will be quite large over a range of other frequencies at which the vibrational frequency is half of the voltage frequency. This phenomenon was analyzed by a comparison of the timing sequences between voltage and joint vibration. This vibrational mode with the largest amplitude can be applied to the generation lift in a flapping wing actuated by dielectric elastomers.

Original languageEnglish
Article number133504
JournalApplied Physics Letters
Volume106
Issue number13
DOIs
StatePublished - 30 Mar 2015
Externally publishedYes

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