Lehrstuhl für Technische Mechanik

Adresse:
Egerlandstraße 5
91058 Erlangen



Untergeordnete Organisationseinheiten

Professur für Computational Mechanics - Umwidmung / Auflösung
Professur für Strukturmechanik


Forschungsbereiche

Biomechanik
Kontaktmechanik
Materialmechanik
Modellierung von Unsicherheiten
Multiskalenmechanik
Optimierung
Prozesssimulation
Strukturdynamik


Forschungsprojekt(e)

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(Skalenübergreifende Bruchvorgänge: Integration von Mechanik, Materialwissenschaften, Mathematik, Chemie und Physik (FRASCAL)):
GRK2423 - P12: Teilprojekt P12 - Postdoctoral Project: Quantum-to-Continuum Model of Thermoset Fracture
Prof. Dr.-Ing. Erik Bitzek; Dr.-Ing. Sebastian Pfaller; Prof. Dr. Ana-Suncana Smith
(02.01.2019 - 30.06.2023)


(Skalenübergreifende Bruchvorgänge: Integration von Mechanik, Materialwissenschaften, Mathematik, Chemie und Physik (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 - P6: Teilprojekt P6 - Fracture in Thermoplastics: Discrete-to-Continuum
Dr.-Ing. Sebastian Pfaller; Prof. Dr. Ana-Suncana Smith
(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)


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)



Publikationen (Download BibTeX)

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Esmaeili, A., Steinmann, P., & Javili, A. (2017). Surface plasticity: theory and computation. Computational Mechanics. https://dx.doi.org/10.1007/s00466-017-1517-x
Landkammer, P., Söhngen, B., Steinmann, P., & Willner, K. (2017). On gradient-based optimization strategies for inverse problems in metal forming. GAMM Mitteilungen, 40(1), 27-50. https://dx.doi.org/10.1002/gamm.201710004
Mehnert, M., Pelteret, J.-P., & Steinmann, P. (2017). Numerical modelling of nonlinear thermo-electro-elasticity. Mathematics and Mechanics of Solids. https://dx.doi.org/10.1177/1081286517729867
Mehnert, M., Mokarram, H., & Steinmann, P. (2017). Towards a thermo-magneto-mechanical coupling framework for magneto-rheological elastomers. International Journal of Solids and Structures. https://dx.doi.org/10.1016/j.ijsolstr.2017.08.022
Landkammer, P., Caspari, M., & Steinmann, P. (2017). Improvements on a non-invasive, parameter-free approach to inverse form finding. Computational Mechanics, 1-15. https://dx.doi.org/10.1007/s00466-017-1468-2
Budday, S., Sommer, G., Holzapfel, G.A., Steinmann, P., & Kuhl, E. (2017). Viscoelastic parameter identification of human brain tissue. Journal of the Mechanical Behavior of Biomedical Materials, 74, 463-476. https://dx.doi.org/10.1016/j.jmbbm.2017.07.014
Soldner, D., Brands, B., Zabihyan, R., Steinmann, P., & Mergheim, J. (2017). A numerical study of different projection-based model reduction techniques applied to computational homogenisation. Computational Mechanics. https://dx.doi.org/10.1007/s00466-017-1428-x
Budday, S., Sommer, G., Haybaeck, J., Steinmann, P., Holzapfel, G.A., & Kuhl, E. (2017). Rheological characterization of human brain tissue. Acta Biomaterialia. https://dx.doi.org/10.1016/j.actbio.2017.06.024
Walter, B., Pelteret, J.-P., Kaschta, J., Schubert, D.W., & Steinmann, P. (2017). On the wall slip phenomenon of elastomers in oscillatory shear measurements using parallel-plate rotational rheometry: II. Influence of experimental conditions. Polymer Testing, 61, 455-463. https://dx.doi.org/10.1016/j.polymertesting.2017.05.036
Walter, B., Pelteret, J.-P., Kaschta, J., Schubert, D.W., & Steinmann, P. (2017). On the wall slip phenomenon of elastomers in oscillatory shear measurements using parallel-plate rotational rheometry: I. Detecting wall slip. Polymer Testing. https://dx.doi.org/10.1016/j.polymertesting.2017.05.035
Mihai, L.A., Budday, S., Holzapfel, G.A., Kuhl, E., & Goriely, A. (2017). A family of hyperelastic models for human brain tissue. Journal of the Mechanics and Physics of Solids, 106, 60-79. https://dx.doi.org/10.1016/j.jmps.2017.05.015
Boddu, V., Endres, F., & Steinmann, P. (2017). Molecular dynamics study of ferroelectric domain nucleation and domain switching dynamics. Scientific Reports. https://dx.doi.org/10.1038/s41598-017-01002-0
Walter, B., Pelteret, J.-P., Kaschta, J., Schubert, D.W., & Steinmann, P. (2017). Preparation of magnetorheological elastomers and their slip-free characterization by means of parallel-plate rotational rheometry. Smart Materials and Structures, 26. https://dx.doi.org/10.1088/1361-665X/aa6b63
Budday, S., Andres, S., Walter, B., Steinmann, P., & Kuhl, E. (2017). Wrinkling instabilities in soft bi-layered systems. Philosophical Transactions of the Royal Society A-Mathematical Physical and Engineering Sciences, 375(2093). https://dx.doi.org/10.1098/rsta.2016.0163
Pelteret, J.-P. (2017). The deal.II code gallery: Quasi-static Finite-Strain Quasi-incompressible Visco-elasticity. https://github.com/dealii/code-gallery.
Riedlbauer, D.-R., Scharowsky, T., Singer, R., Steinmann, P., Körner, C., & Mergheim, J. (2017). Macroscopic simulation and experimental measurement of melt pool characteristics in selective electron beam melting of Ti-6Al-4V. International Journal of Advanced Manufacturing Technology. https://dx.doi.org/10.1007/s00170-016-8819-6
Boddu, V., Endres, F., & Steinmann, P. (2017). Non-linear switching kinetics of ferroelectric mono-domain single crystals. Madrid, ES.
Caspari, M., Landkammer, P., & Steinmann, P. (2017). Inverse form finding with H-adaptivity and an application to a notch stamping process. In International Center for Numerical Methods in Engineering (Eds.), Proceedings of the 14th International Conference on Computational Plasticity - Fundamentals and Applications (pp. 88-99). Barcelona, ES: International Center for Numerical Methods in Engineering.
Arndt, D., Bangerth, W., Davydov, D., Heister, T., Heltai, L., Kronbichler, M.,... Wells, D. (2017). The \texttt{deal.II} Library, Version 8.5. Journal of Numerical Mathematics, 25(3), 137--145. https://dx.doi.org/10.1515/jnma-2017-0058
Weickenmeier, J., de Rooij, R., Budday, S., Ovaert, T., & Kuhl, E. (2017). The mechanical importance of myelination in the central nervous system. Journal of the Mechanical Behavior of Biomedical Materials. https://dx.doi.org/10.1016/j.jmbbm.2017.04.017


Zusätzliche Publikationen (Download BibTeX)


Esmaeili, A., Steinmann, P., & Javili, A. (2017). Surface plasticity: theory and computation. Computational Mechanics. https://dx.doi.org/10.1007/s00466-017-1517-x
Esmaeili, A., Steinmann, P., & Javili, A. (2017). COUPLED THERMALLY GENERAL IMPERFECT AND MECHANICALLY COHERENT ENERGETIC INTERFACES SUBJECT TO IN-PLANE DEGRADATION. Journal of Mechanics of Materials and Structures.
Esmaeili, A., Javili, A., & Steinmann, P. (2016). A thermo-mechanical cohesive zone model accounting for mechanically energetic Kapitza interfaces. International Journal of Solids and Structures. https://dx.doi.org/10.1016/j.ijsolstr.2016.04.035
Esmaeili, A., Javili, A., & Steinmann, P. (2016). Highly-conductive energetic coherent interfaces subject to in-plane degradation. Mathematics and Mechanics of Solids. https://dx.doi.org/10.1177/1081286516642818
Esmaeili, A., Javili, A., & Steinmann, P. (2016). Non-coherent energetic interfaces accounting for degradation. Computational Mechanics.
Esmaeili, A., Javili, A., & Steinmann, P. (2016). Coherent energetic interfaces accounting for in-plane degradation. International Journal of Fracture.

Zuletzt aktualisiert 2017-30-08 um 14:43