IROS 2016poster8 citations

Mechanical implementation of a variable-stiffness actuator for a softly strummed ukulele

Austin B. Lawrence, Alexander N. Alspach, Darrin C. Bentivegna

Abstract

This research illustrates the design, implementation, and evaluation of pneumatic variable-stiffness actuator (VSA) used to strum a four-stringed ukulele with audio variability. A guitar pick is antagonistically loaded with two inflatable polydimethylsiloxane (PDMS) actuators, allowing for the independent control of both position or stiffness through the utilization of one and two PDMS solenoids, respectively. To generate smooth analog pressure signals, the bellows incorporate a controlled leak to atmospheric pressure, having synonymous properties to a low-pass filter circuit when fed a coarse pressure signal through PWM control. Experimental results illustrate a minimum to maximum stiffness range of 76 to 320 Nmm/rad, a maximum cyclical speeds of 2.04 Hz, and a stiffness change rate of 96 Nmm/rad/kPa. Additional to the VSA, alternative PDMS fabrication methods are presented to allow for complex, precise manufacturing of silicone bodies in a low-cost manner.

BibTeX
@inproceedings{iros2016_mechanicalimplem,
  title = {Mechanical implementation of a variable-stiffness actuator for a softly strummed ukulele},
  author = {Austin B. Lawrence and Alexander N. Alspach and Darrin C. Bentivegna},
  booktitle = {IROS 2016},
  year = {2016}
}
Mechanical implementation of a variable-stiffness actuator for a softly strummed ukulele · IROS 2016