Dipl.-Ing. Michael Strobl

  • Wiss. Mitarbeiter 2012 - 2020

Arbeitsgebiete

  • Numerische Mechanik
  • Bruch- und Schädigungsmechanik
  • Phasenfeldmethode zur Simulation von Sprödbrüchen

Lehre (Übungen)

Statik starrer Körper  (WS 12/13)
Festigkeitslehre (SS 14, SS 15, SS 17)
Dynamik (WS 13/14, WS 15/16)
Einführung in die Kontinuumsmechanik (SS 17, SS 18)
Kontinuumsmechanik (WS 15/16, WS 17/18)
Grundlagen Finite Elemente (WS 14/15)
Bruch- und Schädigungsmechanik (WS 13/14, WS 14/15, SS 16)
Anwendungsorientierte Materialtheorien (WS 17/18)

Betreute Arbeiten (BA, MA)

Shala, Shqipron: Advanced analysis of contact algorithms for the rope-surface case: generalized Euler-Eytelwein problem (MA, 2019)

Dowgiałło, Piotr: Analyse der Rissinitiierung unter Eindruckbelastung mittels eines hybriden Kriteriums der Finiten Bruchmechanik (MA, 2016)

Morand, Lukas: Entwicklung eines rotationssymmetrischen Finiten Elements mit Phasenfeldansatz für spröde Bruchvorgänge (MA, 2015)

Kursteilnahmen

  • Introduction to the PETSc library, Texas Advanced Computing Center (TACC), Austin, USA, January 23, 2017
  • OpenMP Programming, Texas Advanced Computing Center (TACC), Austin, USA, October 27-28, 2016
  • RoLiCer Trainings-Workshop - Multiscale Lifetime Modeling for Ceramics, Karlsruhe, Germany, September 29-30, 2014
  • CES Summer School - Advanced Finite Element Analysis, Luxembourg, Luxembourg, July 1-7, 2013

Veröffentlichungen

Strobl, M., Seelig, Th.: Phase field modeling of Hertzian indentation fracture. J. Mech. Phys. Solids, Vol. 143, 2020, DOI

Strobl, M., Seelig, Th.: Analysis of Hertzian indentation fracture using a phase field approach. PAMM Proc. Appl. Math. Mech. 19(1), e201900257, 2019, DOI

Strobl, M., Seelig, Th.: Restrictions in phase field modeling of brittle fracture. PAMM Proc. Appl. Math. Mech. 18(1), 2018, DOI

Strobl, M., Dowgiałło , P., Seelig, Th.: Analysis of Hertzian indentation fracture in the framework of finite fracture mechanics. Int. J. Frac., Vol. 206, pp. 67-79, 2017, DOI

Strobl, M., Morand, L., Seelig, Th.: Simulation of Hertzian cone cracks using a phase field description for fracture. PAMM Proc. Appl. Math. Mech. 16, 177-178, 2016, DOI

Strobl, M., Seelig, Th.: On constitutive assumptions in phase field approaches to brittle fracture. Procedia Structural Integrity 2, 3705-3712, 2016, DOI

Strobl, M., Seelig, Th.: A novel treatment of crack boundary conditions in phase field models of fracture. PAMM Proc. Appl. Math. Mech. 15 (1), 155-156, 2015, DOI

Vorträge

Strobl, M., Seelig, Th.: Simulation of Hertzian indentation fracture using a phase field approach. 6th International Conference on Computational Modeling of Fracture and Failure of Materials and Structures (CFRAC), Brunswick, Germany, June 12-14, 2019

Strobl, M., Seelig, Th.: Phase field modeling of Hertzian indentation fracture. Invited Young Researchers' Minisymposium Lecture at the 90th Annual Meeting of the International Association of Applied Mathematics and Mechanics (GAMM), Vienna, Austria, February 18-22, 2019

Strobl, M., Seelig, Th.: Numerical simulation of Hertzian indentation fracture using a phase field approach. 6th GAMM Workshop on Phase Field Modeling, Karlsruhe, Germany, February 7-8, 2019

Strobl, M., Seelig, Th.: Open issues in phase field approaches to brittle fracture. European Mechanics of Materials Conference (EMMC16), Nantes, France, March 26-28, 2018

Strobl, M., Seelig, Th.: Restrictions in phase field modeling of brittle fracture. 89th Annual Meeting of the International Association of Applied Mathematics and Mechanics (GAMM), Munich, Germany, March 19-23, 2018

Strobl, M., Seelig, Th.: Analysis of Hertzian indentation fracture using a phase field method. 5th International Conference on Computational Modeling of Fracture and Failure of Materials and Structures (CFRAC), Nantes, France, June 14-16, 2017

Strobl, M., Dowgiałło, P., Seelig, Th.: Analysis of Hertzian indentation fracture in the framework of finite fracture mechanics. 88th Annual Meeting of the International Association of Applied Mathematics and Mechanics (GAMM), Weimar, Germany, March 6-10, 2017

Strobl, M.: Phase field models and their ability to simulate Hertzian indentation fracture. Aerospace Engineering and Engineering Mechanics Seminar, UT Austin, USA, March 7, 2017

Strobl, M., Seelig, Th.: On constitutive assumptions in phase field approaches to brittle fracture. European Mechanics of Materials Conference (EMMC15), Brussels, Belgium, September 7-9, 2016

Strobl, M., Seelig, Th.: On constitutive assumptions in phase field approaches to brittle fracture. 21st European Conference on Fracture (ECF21), Catania, Italy, June 20-24, 2016

Strobl, M., Morand, L., Seelig, Th.: Simulation of Hertzian cone cracks using a phase field description for fracture. 87th Annual Meeting of the International Association of Applied Mathematics and Mechanics (GAMM), Brunswick, Germany, March 7-11, 2016

Strobl, M., Seelig, Th.: Consistent behavior of macroscopic cracks in the context of phase field models. 3rd GAMM Workshop on Phase Field Modeling, Brunswick, Germany, February 4-5, 2016

Strobl, M., Seelig, Th.: On the treatment of crack boundary conditions in phase field models of dynamic fracture. 4th International Conference on Computational Modeling of Fracture and Failure of Materials and Structures (CFRAC), Cachan, France, June 3-5, 2015

Strobl, M., Seelig, Th.: A novel treatment of crack boundary conditions in phase field models of fracture. 86th Annual Meeting of the International Association of Applied Mathematics and Mechanics (GAMM), Lecce, Italy, March 23-27, 2015

Schweizerhof, K., Konyukhov, A., Izi, R., Strobl, M.: A solid beam element for wire rope simulation with a special contact algorithm. 11th World Congress on Computational Mechanics (WCCM XI), Barcelona, Spain, July 20-25, 2014

Strobl, M., Konyukhov, A., Izi, R., Schweizerhof, K.: A solid beam element including cross section deformation dedicated for cable contact. Contact Mechanics International Symposium (CMIS), Abu Dhabi, United Arab Emirates, February 3-5, 2014

Strobl, M., Konyukhov, A., Schweizerhof, K.: A Six-Node Solid-Beam Finite Element with Elliptic Cross Section. 84th Annual Meeting of the International Association of Applied Mathematics and Mechanics (GAMM), Novi Sad, Serbia, March 18-22, 2013