Interfacial cavitation Article Swipe
YOU?
·
· 2022
· Open Access
·
· DOI: https://doi.org/10.1093/pnasnexus/pgac217
Cavitation has long been recognized as a crucial predictor, or precursor, to the ultimate failure of various materials, ranging from ductile metals to soft and biological materials. Traditionally, cavitation in solids is defined as an unstable expansion of a void or a defect within a material. The critical applied load needed to trigger this instability -- the critical pressure -- is a lengthscale independent material property and has been predicted by numerous theoretical studies for a breadth of constitutive models. While these studies usually assume that cavitation initiates from defects in the bulk of an otherwise homogeneous medium, an alternative and potentially more ubiquitous scenario can occur if the defects are found at interfaces between two distinct media within the body. Such interfaces are becoming increasingly common in modern materials with the use of multimaterial composites and layer-by-layer additive manufacturing methods. However, a criterion to determine the threshold for interfacial failure, in analogy to the bulk cavitation limit, has yet to be reported. In this work, we fill this gap. Our theoretical model captures a lengthscale independent limit for interfacial cavitation, and is shown to agree with our observations at two distinct lengthscales, via two different experimental systems. To further understand the competition between the two cavitation modes (bulk versus interface), we expand our investigation beyond the elastic response to understand the ensuing unstable propagation of delamination at the interface. A phase diagram summarizes these results, showing regimes in which interfacial failure becomes the dominant mechanism.
Related Topics
- Type
- article
- Language
- en
- Landing Page
- https://doi.org/10.1093/pnasnexus/pgac217
- https://academic.oup.com/pnasnexus/article-pdf/1/4/pgac217/48849489/pgac217.pdf
- OA Status
- gold
- Cited By
- 10
- References
- 74
- Related Works
- 10
- OpenAlex ID
- https://openalex.org/W4300864363
Raw OpenAlex JSON
- OpenAlex ID
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https://openalex.org/W4300864363Canonical identifier for this work in OpenAlex
- DOI
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https://doi.org/10.1093/pnasnexus/pgac217Digital Object Identifier
- Title
-
Interfacial cavitationWork title
- Type
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articleOpenAlex work type
- Language
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enPrimary language
- Publication year
-
2022Year of publication
- Publication date
-
2022-09-01Full publication date if available
- Authors
-
Thomas Henzel, Japinder Nijjer, S. Chockalingam, Hares Wahdat, Alfred J. Crosby, Jing Yan, Tal CohenList of authors in order
- Landing page
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https://doi.org/10.1093/pnasnexus/pgac217Publisher landing page
- PDF URL
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https://academic.oup.com/pnasnexus/article-pdf/1/4/pgac217/48849489/pgac217.pdfDirect link to full text PDF
- Open access
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YesWhether a free full text is available
- OA status
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goldOpen access status per OpenAlex
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https://academic.oup.com/pnasnexus/article-pdf/1/4/pgac217/48849489/pgac217.pdfDirect OA link when available
- Concepts
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Cavitation, Materials science, Mechanics, PhysicsTop concepts (fields/topics) attached by OpenAlex
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10Total citation count in OpenAlex
- Citations by year (recent)
-
2025: 4, 2024: 3, 2023: 2, 2022: 1Per-year citation counts (last 5 years)
- References (count)
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74Number of works referenced by this work
- Related works (count)
-
10Other works algorithmically related by OpenAlex
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| publication_year | 2022 |
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