Fingerprint Fingerprint is based on mining the text of the person's scientific documents to create an index of weighted terms, which defines the key subjects of each individual researcher.

Grain boundaries Engineering & Materials Science
Microstructure Engineering & Materials Science
grain boundaries Physics & Astronomy
Aluminum Engineering & Materials Science
Plasticity Engineering & Materials Science
Aluminum alloys Engineering & Materials Science
damage Physics & Astronomy
Hydrogen Engineering & Materials Science

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Research Output 2003 2017

  • 1351 Citations
  • 20 h-Index
  • 71 Article
  • 23 Conference contribution
  • 6 Chapter
  • 1 Editorial
1 Citations

A thermodynamic and kinetic-based grain growth model for nanocrystalline materials: Parameter sensitivity analysis and model extension

Tschopp, M. A., Hernández-Rivera, E., Atwater, M. A., Solanki, K. N. & Darling, K. A. Apr 15 2017 In : Computational Materials Science. 131, p. 250-265 16 p.

Research output: Research - peer-reviewArticle

Grain Growth
Parameter Sensitivity
Growth Model
Sensitivity Analysis
Thermodynamics

Dislocation core properties of β-tin: A first-principles study

Bhatia, M. A., Azarnoush, M., Adlakha, I., Lu, G. & Solanki, K. N. Mar 1 2017 In : Modelling and Simulation in Materials Science and Engineering. 25, 2, 025014

Research output: Research - peer-reviewArticle

First-principles
Dislocation
tin
Tin
Edge dislocations

Energetics of Hydrogen Segregation to α-Fe Grain Boundaries for Modeling Stress Corrosion Cracking

Rajagopalan, M., Adlakha, I., Tschopp, M. A. & Solanki, K. N. May 25 2017 (Accepted/In press) In : JOM. p. 1-6 6 p.

Research output: Research - peer-reviewArticle

Stress corrosion cracking
Hydrogen
Grain boundaries
Defects
Polycrystalline materials
2 Citations

He–V cluster nucleation and growth in α-Fe grain boundaries

Tschopp, M. A., Gao, F. & Solanki, K. N. Feb 1 2017 In : Acta Materialia. 124, p. 544-555 12 p.

Research output: Research - peer-reviewArticle

Helium
Grain boundaries
Nucleation
Atoms
Binding energy
2 Citations

Microstructural evolution in a nanocrystalline Cu-Ta alloy: A combined in-situ TEM and atomistic study

Rajagopalan, M., Darling, K., Turnage, S., Koju, R. K., Hornbuckle, B., Mishin, Y. & Solanki, K. N. Jan 5 2017 In : Materials and Design. 113, p. 178-185 8 p.

Research output: Research - peer-reviewArticle

Microstructural evolution
Transmission electron microscopy
Temperature
Metals
Heating

Projects 2011 2020