Symbolic illustration of publications in scientific journals. AI generated.

Publications of Lalithkumar Bhaskar

Journal Article (4)

1.
Journal Article
Bhaskar, L.; Sonawane, D.; Holz, H.; Paeng, J.; Schweizer, P.; Rao, J.; Bellón Lara, B.; Frey, D.; Lambai, A.; Petho, L. et al.; Michler, J.; Schwiedrzik, J.; Mohanty, G.; Dehm, G.; Ramachandramoorthy, R.: Filling a Gap in Materials Mechanics: Nanoindentation at High Constant Strain Rates up to 105 s-1. Small, e73215 (2026)
2.
Journal Article
Kang, S. G.; Bellón Lara, B.; Bhaskar, L.; Zhang, S.; Ding, K.; Götz, A.; Wirth, J.; Apeleo Zubiri, B.; Kalácska, S.; Jain, M. et al.; Sharma, A.; Koelmans, W.; Schürch, P.; Spiecker, E.; Michler, J.; Schwiedrzik, J.; Dehm, G.; Ramachandramoorthy, R.: Energy dissipation of metallic microlattices under extreme thermomechanical environments. Acta Materialia 310, 122131 (2026)
3.
Journal Article
Gyu Kang, S.; Jeong, K.; Bellón, B.; Bhaskar, L.; Shoji Aota, L.; Paeng, J.; Sonawane, D.; Ding, K.; Kim, S.-H.; Goetz, A. et al.; Apeleo Zubiri, B.; Spiecker, E.; El-Zoka, A.; Gault, B.; Dehm, G.; Ramachandramoorthy, R.: Thermomechanics of Picoliter Liquids Encapsulated in Metal Microarchitectures. Advanced Materials, e15677 (2026)
4.
Journal Article
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. Materials Today 87, pp. 90 - 102 (2025)

Preprint (2)

5.
Preprint
Bhaskar, L.; Moharana, N.; Holz, H.; Ramachandramoorthy, R.; Kumar, K.C. H.; Kumar, R.: Probing Elastic Isotropy in Entropy Stabilized Transition Metal Oxides: Experimental Estimation of Single Crystal Elastic Constants from Polycrystalline Materials. arXiv (2024)
6.
Preprint
Kang, S. G.; Bellón Lara, B.; Bhaskar, L.; Zhang, S.; Götz, A.; Wirth, J.; Zubiri, B. A.; Kalácska, S.; Jain, M.; Sharma, A. et al.; Koelmans, W.; Schürch, P.; Spiecker, E.; Michler, J. K.; Schwiedrzik, J.; Dehm, G.; Ramachandramoorthy, R.: Fabrication and extreme micromechanics of additive metal microarchitectures. ArXiv (2023)
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