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M. Sc. Markus Schewe

M. Sc. Markus Schewe Foto von M. Sc. Markus Schewe

Telefon
+49 231 755-2069

Adresse

Raum 142

Inhalt

Curriculum Vitae

since 04/2017 Research Assistant, Institute of Mechanics, TU Dortmund
03/2017 Master of Science Degree (M.Sc.), Thesis Title: Implementation of the Particle Finite Element Method
10/2014-03/2017 Student Assistant, Institute of Mechanics, TU Dortmund
12/2014 Bachelor of Science Degree (B.Sc.), Thesis Title: Theorie und Finite Element Implementierung thermomechanisch gekoppelter Interface-Elemente
11/2013-02/2014 Internship: Thyssen Krupp Rothe Erde GmbH, Lippstadt
01/2012-09/2013 Student Assistant, Institute of Mechanics, TU Dortmund


Research

Finished Project

SFB/TR73, TP C7: Mechanism-based Modeling of Wear in Sheet-Bulk Metal Forming (Link german/english) 04/2017 - 03/2021.

Research Interests

  • Contact Mechanics
  • ParticleFEM
  • Shape Detection Methods
  • Tribology and roughness
  • Lubrication
  • Inelastic Material Behaviour

Poster

  • French-German Summerschool on Evolutionary Solid Bodies (J.F. Ganghoffer, F.J. Barthold), 04.-10.10.2015, Thermomechanically coupled interface elements.
  • GACM Colloquium on Computational Mechanics (University Stuttgart), 11.-13.10.2017, The Particle Finite Element Method in solid mechanics applications.
  • Umformtechnisches Kolloquium Hannover (IFUM, Leibniz Universität Hannover), 05.03.2020, Modellierung von Verschleiss Mikrostrukturierter Oberflächen

Talks

  • GAMM Annual Meeting 2018 (Technical University Munich), 19.-23.03.2018, The Particle Finite Element Method for the modelling and simulation of solid body interac-
    tions.
  • GAMM Annual Meeting 2019 (Technical University Vienna), 18.-22.02.2019, Aspects of the Particle Finite Element Method applied to contact problems.

Publications

  • M. Schewe, A. Menzel, The Particle Finite Element Method for the modelling and simulation of solid body interac-
    tions (PAMM Proceedings, 2018, https://doi.org/10.1002/pamm.201800110)
  • M. Schewe, A. Menzel, Aspects of the Particle Finite Element Method applied to contact problems (PAMM Proceedings, 2019, https://doi.org/10.1002/pamm.201900403, Open Access)
  • M.Schewe, H. Wilbuer, A. Menzel, Simulation of wear and effective friction properties of microstructured surfaces (Wear, 2021, https://doi.org/10.1016/j.wear.2020.203491, Open Access)
  • M. Schewe, A. Menzel, Mechanism-Based Modelling of Wear in Sheet-Bulk Metal Forming. (Merklein M., Tekkaya A.E., Behrens BA. (eds) Sheet Bulk Metal Forming. TCRC73 2020. Lecture Notes in Production Engineering, 2021. Springer, Cham. https://doi.org/10.1007/978-3-030-61902-2_19)

 

 



Teaching

Supervision of student theses

  • Felix Rörentrop: Vergleich analytischer Methoden und der Finite-Elemente-Lösung eines Biegeschwingers, Bachelor Project Thesis, 2018.
  • Philipp Linneweber: Finite-Elemente-Implementierung eines Kontaktmodells mit Dreieck-Segmenten, Bachelor Thesis, 2018.
  • Nils Zöllner: Viskose Materialmodelle in der Finite-Elemente-Simulation von Schmierstoffen, Bachelor Thesis, 2019.
  • Pouria Araghchi: Regelmäßige Neuvernetzung als Strategie für Finite-Element-Simulationen bei großen Verformungen in der Festkörpermechanik, Bachelor Thesis, 2020.
  • Alexander Niehüser: Vergleich der Lagrangemultiplikatoren- und Nitsche-Methode zur Lösung von Normalkontaktproblemen mit großen Verformungen mittels Finite-Elemente-Methode, Master Project Thesis, 2020.
  • Alexander Niehüser: Finite Element Simulation of Large Strain Frictional Contact with the Contact Domain Method, Master Thesis, 2020.