Ashutosh Gandhi, M.Sc.
Inhaltsverzeichnis
Wissenschaftlicher Mitarbeiter
NameAshutosh Rajiv Gandhi M.Sc.
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Institut für Mechanik und Flächentragwerke
Institut für Mechanik und Flächentragwerke
Besucher:
TU Dresden, Fakultät Bauingenieurwesen August-Bebel-Straße 30
01219 Dresden
Deutschland
Forschung
- Thermo-mechanically coupled problems at finite strains
- Linear and non-linear finite element formulations
- Multiscale modeling of Dual-Phase steels
- Numerical calculation of tangent stiffness matrices based on complex-step derivative approximations
Werdegang
seit 10/2014 | Wissenschaftlicher Mitarbeiter am Institut für Mechanik und Flächentragwerke, Fakultät Bauingenieurwesen, Technische Universität Dresden |
09/2014 | Masters degree, M.Sc. Computational Mechanics, Thesis title: "Thermo-elasto-plasticity at large strains - Continuum mechanical formulation and finite element implementation” |
06/2014- 09/2014 | Wissenschafliche Hilfskraft am Institut für Mechanik und Flächentragwerke, Fakultät Bauingenieurwesen, Technische Universität Dresden |
06/2013- 06/2014 | Wissenschaftlicher Mitarbeiter am Institut für Mechanik, Abteilung Bauwissenschaften, Universität Duisburg-Essen |
10/2011- 06/2013 | Master-Student, M.Sc. Computational Mechanics Programm, Universität Duisburg-Essen |
06/2010 | Bachelors degree, B.Tech. Mechanical Engineering, Thesis title: "Design of multistage centrifugal pump and a SCADA system to monitor and control the pumping process" |
06/2006- 06/2010 | Bachelors student, Mechanical Engineering, Shri U.V. Patel College of Engineering, Ganpat University, Gujarat, India |
05/2006 | Higher secondary school education, St. Kabir School, Gujarat, India |
Publikationen
Balzani, D., Gandhi, A., Tanaka, M. & Schröder, J. (2015), "Numerical calculation of thermo-mechanical problems at large strains based on a robust approximation scheme for tangent stiffness matrices", Computational Mechanics. Vol. DOI 10.1007/s00466-015-1139-0 |
Gandhi, A. (2014), "Thermo-elasto-plasticity at finite strains: A continuum mechanical formulation and finite element implementation". School: Report No. 94, Institut für Mechanik, Abt. Bauwissenschaften, Universität Duisburg-Essen. |
Gandhi, A., Balzani, D. & Schröder, J. (2014), "Modeling advanced high strength steels based on direct micro-macro calculations", Proceedings of Applied Mathematics and Mechanics., In Proceedings in Applied Mathematics and Mechanics (accepted). Vol. 14, pp. 587-588. |
Schröder, J., Gandhi, A. & Balzani, D. (2014), "Two-Scale Modeling of DP Steel Incorporating Distributed Properties inside the Micro-Constituents", Procedia Engineering. Vol. 81, pp. 1390–1395. |