Prof. Dr.-Ing. Paul Steinmann



Organisation


Lehrstuhl für Technische Mechanik


Awards / Honours


2010 : ERC Advanced Investigator Grant



Project lead

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(Fracture across Scales: Integrating Mechanics, Materials Science, Mathematics, Chemistry, and Physics (FRASCAL)):
GRK2423 - P10: Teilprojekt P10 - Configurational Fracture/Surface Mechanics
Prof. Dr.-Ing. Paul Steinmann; Prof. Dr. Michael Stingl
(02/01/2019 - 30/06/2023)

(Skalenübergreifende Bruchvorgänge: Integration von Mechanik, Materialwissenschaften, Mathematik, Chemie und Physik (FRASCAL)):
GRK2423 - P5: Teilprojekt P5 - Compressive Failure in Porous Materials
Prof. Dr.-Ing. Paul Steinmann; Prof. Dr. Michael Zaiser
(02/01/2019 - 30/06/2023)

GRK 2423 FRASCAL: Fracture across Scales: Integrating Mechanics, Materials Science, Mathematics, Chemistry, and Physics (FRASCAL)
Prof. Dr.-Ing. Paul Steinmann
(01/01/2019 - 30/06/2023)

FRASCAL: Fractures across Scales: Integrating Mechanics, Materials Science, Mathematics, Chemistry, and Physics/ Skalenübergreifende Bruchvorgänge: Integration von Mechanik, Materialwissenschaften, Mathematik, Chemie und Physik
Prof. Dr.-Ing. Paul Steinmann
(01/01/2019 - 30/06/2023)

(SPP 1886: Polymorphic uncertainty modelling for the numerical design of structures):
A hybrid Sampling-Stochastic-Finite-Element-Method for polymorphic, microstructural uncertainties in heterogeneous materials
Prof. Dr.-Ing. Paul Steinmann; Prof. Dr.-Ing. Kai Willner
(01/01/2016 - 31/03/2020)


Project member


GRK 2423 FRASCAL: Fracture across Scales: Integrating Mechanics, Materials Science, Mathematics, Chemistry, and Physics (FRASCAL)
Prof. Dr.-Ing. Paul Steinmann
(01/01/2019 - 30/06/2023)

Bridging scales - from Quantum Mechanics to Continuum Mechanics. A Finite Element approach.
Denis Davydov, Ph.D.
(01/01/2016 - 30/09/2018)


Publications (Download BibTeX)

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Cui, Y., Ravnik, J., Verhnjak, O., Hribersek, M., & Steinmann, P. (2019). A novel model for the lift force acting on a prolate spheroidal particle in arbitrary non-uniform flow. Part II. Lift force taking into account the non-streamwise flow shear. International Journal of Multiphase Flow, 111, 232-240. https://dx.doi.org/10.1016/j.ijmultiphaseflow.2018.12.003
Smriti, ., Kumar, A., Großmann, A., & Steinmann, P. (2019). A thermoelastoplastic theory for special Cosserat rods. Mathematics and Mechanics of Solids, 24(3), 686-700. https://dx.doi.org/10.1177/1081286517754132
Landkammer, P., Jobst, A., Kiener, C., Steinmann, P., & Merklein, M. (2019). Investigations on residual stress generation in full-forward-extrusion. Production Engineering. https://dx.doi.org/10.1007/s11740-019-00892-5
Mehnert, M., & Steinmann, P. (2019). On the influence of the compliant electrodes on the mechanical behavior of VHB 4905. Computational Materials Science, 160, 287-294. https://dx.doi.org/10.1016/j.commatsci.2019.01.011
Cai, X., Steinmann, P., Yao, X., & Wang, J. (2019). Thermodynamic formulation of a unified multi-mechanism continuum viscoplastic damage model with application to high-Cr steels. International Journal of Plasticity, 114, 15-39. https://dx.doi.org/10.1016/j.ijplas.2018.09.011
Caspari, M., Landkammer, P., & Steinmann, P. (2018). A non-invasive node-based form finding approach with discretization-independent target configuration. Advanced Modeling and Simulation in Engineering Sciences, 5(1). https://dx.doi.org/10.1186/s40323-018-0104-9
Greiner, S., Soldner, D., Jaksch, A., Zhao, M., Mergheim, J., Steinmann, P.,... Drummer, D. (2018). Experimentelle und simulative Untersuchung der zeit- und ortsaufgelösten Temperaturfelder beim selektiven Strahlschmelzen von Kunststoffen. In Proceedings of the 6. Industriekolloquium des Sonderforschungsbereichs 814. Nürnberg.
Caspari, M., Landkammer, P., & Steinmann, P. (2018). Illustration of an improved non-invasive form finding algorithm. In American Institute of Physics Inc. (Eds.), 21st International ESAFORM Conference on Material Forming. Palermo: AIP Conference Proceedings.
Landkammer, P., Caspari, M., & Steinmann, P. (2018). Improvements on a non-invasive, parameter-free approach to inverse form finding. Computational Mechanics, 61(4), 433-447. https://dx.doi.org/10.1007/s00466-017-1468-2
Kergaßner, A., Mergheim, J., & Steinmann, P. (2018). Modeling of additively manufactured materials using gradient-enhanced crystal plasticity. Computers & Mathematics With Applications. https://dx.doi.org/10.1016/j.camwa.2018.05.016

Last updated on 2016-05-05 at 05:01