• 1783 Citations
  • 23 h-Index
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Fingerprint Fingerprint is based on mining the text of the experts' scientific documents to create an index of weighted terms, which defines the key subjects of each individual researcher.

Aluminum Chemical Compounds
Grain boundaries Engineering & Materials Science
Microstructure Engineering & Materials Science
Plasticity Engineering & Materials Science
grain boundaries Physics & Astronomy
Crashworthiness Engineering & Materials Science
Welds Engineering & Materials Science
Aluminum alloys Engineering & Materials Science

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Research Output 2003 2019

Revealing cryogenic mechanical behavior and mechanisms in a microstructurally-stable, immiscible nanocrystalline alloy

Hornbuckle, B. C., Kale, C., Srinivasan, S., Luckenbaugh, T. L., Solanki, K. & Darling, K. A., Feb 1 2019, In : Scripta Materialia. 160, p. 33-38 6 p.

Research output: Contribution to journalArticle

Nanocrystalline alloys
cryogenic temperature

Thermo-mechanical strengthening mechanisms in a stable nanocrystalline binary alloy – A combined experimental and modeling study

Kale, C., Turnage, S., Garg, P., Adlakha, I., Srinivasan, S., Hornbuckle, B. C., Darling, K. & Solanki, K., Feb 5 2019, In : Materials and Design. 163, 107551.

Research output: Contribution to journalArticle

Nanocrystalline alloys
Binary alloys
Strengthening (metal)
Nanocrystalline materials
1 Citations

An Insight into Machining of Thermally Stable Bulk Nanocrystalline Metals

Hammond, V. H., Luckenbaugh, T. L., Aniska, M., Gray, D. M., Smeltzer, J. A., Hornbuckle, B. C., Marvel, C. J., Solanki, K., Schmitz, T. & Darling, K. A., Jan 1 2018, (Accepted/In press) In : Advanced Engineering Materials.

Research output: Contribution to journalArticle

Nanocrystalline materials
2 Citations

Anomalous mechanical behavior of nanocrystalline binary alloys under extreme conditions

Turnage, S. A., Rajagopalan, M., Darling, K. A., Garg, P., Kale, C., Bazehhour, B. G., Adlakha, I., Hornbuckle, B. C., Williams, C. L., Peralta, P. & Solanki, K., Dec 1 2018, In : Nature Communications. 9, 1, 2699.

Research output: Contribution to journalArticle

Nanocrystalline alloys
Binary alloys
binary alloys
strain rate
3 Citations

Atomistic modeling of capillary-driven grain boundary motion in Cu-Ta alloys

Koju, R. K., Darling, K. A., Solanki, K. & Mishin, Y., Apr 15 2018, In : Acta Materialia. 148, p. 311-319 9 p.

Research output: Contribution to journalArticle

Grain boundaries
Solid solutions
Nanocrystalline materials
Mechanical alloying

Projects 2011 2020