16-08-3284-vl High Temperature Materials Behaviour II

Course offering details

Instructors: Dr.-Ing. Christian Kontermann

Event type: Lecture

Org-unit: Dept. 16 - Mechanical Engineering

Displayed in timetable as: High Temperature II

Subject:

Crediting for:

Hours per week: 2

Language of instruction: Englisch

Min. | Max. participants: - | -

Digital Teaching:
The lecture will be held in presence (if the then active pandemic-session will allow this). Alternatively, the lecture will be given live via zoom.

Course Contents:
Syllabus

A: Material modelling: 1: Cyclic, rate-independent plasticity: hardening, Bauschinger-effect, Masing-behavior, Memory-behaviour (Cyclic Plasticity); 2: Description of temperature induced, rate-dependant plasticity resp. viscoplasticity (Creep); 3: General structure and categories of material models within the structural mechanic simulation approach „Finite Element Method“ (FEM); 4:  Implementation of Cyclic Plasticity and Creep within the FEM: Incremental Theory vs. Deformation Theory; 5: Example application within the FEM-Software ANSYS and ABAQUS

B: Damage & Lifetime: 1: Introduction of the term „Damage“ & microstructural aspects; 2: Basics with regard to effects like: Mean stress, multiaxiality and superposed loading; 3: Phenomenological description of creep-fatigue interaction; 4: Constitutive, unified material- and damage models; 5: Example application „Lifetime Analysis of a component“C: Numerical Fracture Mechanics: 1: Recap of Fracture Mechanic Fundamentals; 2: Creep Fracture Mechanics: Basics; 3: Description and Relevance of Crack Closure: forms, analytical and numerical approaches; 4: Numerical description of cracks within the FEM in 2D and 3D; 5: Example application „Assessment of a real component crack“ with ANSYS and ABAQUS

Literature:


  • Kontermann C., Oechsner M.: Lecture Slides
  • Webster G.A., Ainsworth R.A. (1994): High Temperature Component Life Assessment, Chapman & Hall
  • Maier H.J., Niendorf T., Bürgel R. (2019) Handbuch Hochtemperatur-Werkstofftechnik. Springer Vieweg, Wiesbaden
  • Rösler J., Harders H., Bäker, M. (2019) Mechanisches Verhalten der Werkstoffe, Springer-Verlag
  • Lemaitre J., Chaboche J.-L. (2000): Mechanics of solid materials, Cambridge University PressGross D., Seelig T. (2007): Bruchmechanik, Springer

Preconditions:
Bachelor MPE, Lecture High Temperature Materials recommended

Expected Number of Participants:
20

Online Offerings:
moodle

Literature
Appointments
Date From To Room Instructors
1 Wed, 13. Apr. 2022 13:30 15:10 S402/101 Dr.-Ing. Christian Kontermann
2 Wed, 20. Apr. 2022 13:30 15:10 S402/101 Dr.-Ing. Christian Kontermann
3 Wed, 27. Apr. 2022 13:30 15:10 S402/101 Dr.-Ing. Christian Kontermann
4 Wed, 4. May 2022 13:30 15:10 S402/101 Dr.-Ing. Christian Kontermann
5 Wed, 11. May 2022 13:30 15:10 S402/101 Dr.-Ing. Christian Kontermann
6 Wed, 18. May 2022 13:30 15:10 S402/101 Dr.-Ing. Christian Kontermann
7 Wed, 25. May 2022 13:30 15:10 S402/101 Dr.-Ing. Christian Kontermann
8 Wed, 1. Jun. 2022 13:30 15:10 S402/101 Dr.-Ing. Christian Kontermann
9 Wed, 8. Jun. 2022 13:30 15:10 S402/101 Dr.-Ing. Christian Kontermann
10 Wed, 15. Jun. 2022 13:30 15:10 S402/101 Dr.-Ing. Christian Kontermann
11 Wed, 22. Jun. 2022 13:30 15:10 S402/101 Dr.-Ing. Christian Kontermann
12 Wed, 29. Jun. 2022 13:30 15:10 S402/101 Dr.-Ing. Christian Kontermann
13 Wed, 6. Jul. 2022 13:30 15:10 S402/101 Dr.-Ing. Christian Kontermann
14 Wed, 13. Jul. 2022 13:30 15:10 S402/101 Dr.-Ing. Christian Kontermann
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Instructors
Dr.-Ing. Christian Kontermann