Published August 16, 2023
| Version v1
Journal article
Open
Discontinuous instabilities in disordered solids
- 1. University of Science and Technology of China
- 2. University of Pennsylvania
- 3. University of Chicago
Description
Under a sufficiently large load, a solid material will flow via rearrangements, where particles change neighbors. Such plasticity is most easily described in the athermal, quasistatic limit of zero temperature and infinitesimal loading rate, where rearrangements occur only when the system becomes mechanically unstable. For disordered solids, the instabilities marking the onset of rearrangements have long been believed to be fold instabilities, in which an energy barrier disappears and the frequency of a normal mode of vibration vanishes continuously. Here, we report that there exists another, anomalous, type of instability caused by the breaking of a "stabilizing bond," whose removal creates an unstable vibrational mode. For commonly studied systems, such as those with harmonic finite-range interparticle interactions, such "discontinuous instabilities" are not only inevitable, they often dominate the modes of failure. Stabilizing bonds are a subset of all the bonds in the system and are prevalent in disordered solids generally. Although they do not trigger discontinuous instabilities in systems with vanishing stiffness at the interaction cutoff, they are, even in those cases, local indicators of incipient mechanical failure. They therefore provide an accurate structural predictor of instabilities not only of the discontinuous type but of the fold type as well.
Data availability
All study data are included in the article and/or SI Appendix.
Files
xu-et-al-2023-discontinuous-instabilities-in-disordered-solids.pdf
Files
(4.9 MB)
| Name | Size | Download all |
|---|---|---|
|
Supporting information md5:0142b1c8793d6bcc5a2ec08857efa711 |
504.7 kB | Preview Download |
|
Article md5:a0eea5dddc51ff964de50d896230314b |
4.4 MB | Preview Download |
Additional details
Identifiers
- DOI
- 10.1073/pnas.2304974120
- Other
- oai:uchicago.tind.io:10432
Funding
- National Natural Science Foundation of China
- 12074355
- National Natural Science Foundation of China
- 11734014
- Simons Foundation
- 454945
- Simons Foundation
- Investigator Award