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Size-scale affects the upper limit of elastic energy storage

Version 4 2024-03-12, 18:11
Version 3 2023-10-29, 14:57
journal contribution
posted on 2024-03-12, 18:11 authored by Mark Ilton, Suzanne Cox, Thijs Egelmeers, Gregory SuttonGregory Sutton, Sheila Patek, Al Crosby
<p>Elastically-driven motion has been used as a strategy to achieve high speeds in small organisms and engineered micro-robotic devices. We examine the size-scaling relations determining the limit of elastic energy release from elastomer bands that efficiently cycle mechanical energy with minimal loss. The maximum center-of-mass velocity of the elastomer bands was found to be size-scale independent, while smaller bands demonstrated larger accelerations and shorter durations of elastic energy release. Scaling relationships determined from these measurements are consistent with the performance of small organisms and engineered devices which utilize elastic elements to power motion.</p>

History

School affiliated with

  • Department of Life Sciences (Research Outputs)

Publication Title

Soft Matter

Volume

15

Issue

46

Pages/Article Number

9579-9586

Publisher

Royal Society of Chemistry

ISSN

1744-683X

eISSN

1744-6848

Date Submitted

2019-11-12

Date Accepted

2019-11-05

Date of First Publication

2019-11-05

Date of Final Publication

2019-11-27

Date Document First Uploaded

2019-11-11

ePrints ID

38858

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