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Finite Inelastizität (5)

Finite Inelasticity (5)

Announcements

The first lecture will take place on Tuesday 9th October 2018 at 12:15 - 13:45 in room 165.


Contents

 

This course represents the second of a two-semester course on the formulation and numerical implementation of multifield and multiscale material models relevant to the simulation of engineering materials, structures and processes. In part II attention will be focused on the use of crystal plasticity to model metallic polycrystals as well as on the modeling and simulation of material microstructures with the help of analytical and computational homogenization methods.



 

Lecture

 

Semester

Lecturer

Dates

Location

WS 2018/19

Prof. Dr.-Ing. Jörn Mosler

Tuesday, 12:30 - 14:00

Wednesday, 8:30 - 10:00

MB-1, R. 165

The slides of the lecture can be downloaded here.


Exercise

 

Documents

Content

Additional documents

Exercise 1

Hyperelasticity

Problem 1.1 a
Problem 1.1 b
Problem 1.2

Exercise 2

Anisotropic hyperelasticity

Problem 1.3

Exercise 3

Damage model

Problem 2.1

Exercise 4

Plasticity (Return mapping; Backward-Euler integration)

Problem 3.1

Exercise 5

Plasticity (Return mapping; Backward-Euler integration; Exponential map; Isotropic hardening)

Problem 3.2

Problem 3.3

Exercise 6 FEM: Damage model Problem 4.1
Exercise 7 FEM: Plasticity model Problem 4.2