Publikationen von Dipali Sonawane

Vortrag (5)

1.
Vortrag
Holz, H.; Bhaskar, L.; Bellón Lara, B.; Sonawane, D.; Dehm, G.; Best, J. P.; Ramachandramoorthy, R.: Influence of a low angle grain boundary on high strain rate deformation in Copper. MecaNano, Vienna, Austria (2024)
2.
Vortrag
Bhaskar, L.; Bellón Lara, B.; Sonawane, D.; Holz, H.; Frey, D.; Petho, L.; Michler, J.; Mohanty, G.; Dehm, G.; Ramachandramoorthy, R.: Exploring micro-/nano- mechanical behaviour at extreme strain rates. TMS Annual Meeting and Exhibition 2024, Orlando, FL, USA (2024)
3.
Vortrag
Sonawane, D.; Bhaskar, L.; Holz, H.; Stein, F.; Dehm, G.; Ramachandramoorthy, R.: Nanoindentation of FeAl in the Ultra-High Strain Rate Regime. 7th International Indentation Workshop – IIW7, Hyderabad, India (2023)
4.
Vortrag
Bhaskar, L.; Bellón Lara, B.; Sonawane, D.; Holz, H.; Frey, D.; Mohanty, G.; Dehm, G.; Ramachandramoorthy, R.: Ultra-high strain rate nanoindentation and micro compression. FEMS Euromat, Frankfurt, Germany (2023)
5.
Vortrag
Sonawane, D.; Bhaskar, L.; Bellón Lara, B.; Chatain, D.; Palm, M.; Best, J. P.; Dehm, G.; Ramachandramoorthy, R.: Dynamic Testing of Iron-Aluminium Alloy Microparticles Fabricated using a Solid-State Dewetting. FEMS EUROMAT 2023, Frankfurt, Germany (2023)

Poster (2)

6.
Poster
Holz, H.; Bhaskar, L.; Sonawane, D.; Dehm, G.; Best, J. P.; Ramachandramoorthy, R.: High strain rate nanoindentation on a low angle grain boundary in copper. ECI Nanomechanical Testing in Materials Research and Development IX, Giardini Naxos, Messina (Sicily), Italy (2024)
7.
Poster
Sonawane, D.; Bhaskar, L.; Zhou, X.; Holz, H.; Stein, F.; Dehm, G.; Ramachandramoorthy, R.: Insights into Dynamic Hardness of B2 Iron Aluminide using Ultra-high Constant Indentation Strain Rate Testing. Structural Nanomaterials, Gordon Research Conference, Les Diablerets, Vaud (fr), Switzerland (2024)

Preprint (1)

8.
Preprint
Bellón Lara, B.; Bhaskar, L.; Brink, T.; Aymerich Armengol, R.; Sonawane, D.; Chatain, D.; Dehm, G.; Ramachandramoorthy, R.: High Strain Rate Compressive Deformation Behavior of Nickel Microparticles. arXiv (2024)
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