Published December 2024
| Version v1
Dissertation
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Training Allostery-Inspired Mechanical Response in Disordered Elastic Networks
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Description
Disordered elastic networks are a model material system in which it is possible to achieve tunable and trainable functions. This work investigates the modification of local mechanical properties in disordered networks inspired by allosteric interactions in proteins: applying strain locally to a set of source nodes triggers a strain response at a distant set of target nodes. This is demonstrated first by using directed aging to modify the existing mechanical coupling between pairs of distant source and target nodes, and later as a means for inducing coupling between formerly isolated source-target pairs. The experimental results are compared with those predicted by simulations.
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Additional details
Identifiers
- Other
- oai:uchicago.tind.io:13974
Funding
- University of Chicago Materials Research Science and Engineering Center
- NSF-DMR 2011854