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Modern Materials in Mechanical Engineering

Type of study Follow-up Master
Language of instruction English
Code 330-5304/02
Abbreviation MMS
Course title Modern Materials in Mechanical Engineering
Credits 6
Coordinating department Department of Applied Mechanics
Course coordinator doc. Ing. Stanislav Polzer, Ph.D.

Subject syllabus

1. plastic materials-structure, manufacturing, applications, mechanical properties, effect of temperature
2. finite deformations, deformation, strain and stress tensors
3. hyperelastic materials-structure, manufacturing, properties, applications
4. experimental testing of the hyperelastic materials
5. consitutive models-Neo Hookean, Mooney-Rivlin, Aruda-Boyce
6. viscoelastic behavior-Voight, Kelvin model,
7. composites-structures-long fiber and short fiber composites, manufacturing, applications
8. composites-limit states-strength of fibers, matrix and composite, rule of mixture
9. composites-limit state of delamination
10. composites-elastic constanty of transversally isotropic material-ELT, muLT, ETT´
11. composites-elastic constanty of transversally isotropic material-muTT´, GLT,
12. composites-homogenization (lonf fibers, short fibers, particle composites)
13. composites-experimental estimation of elastic constants, sandwich structures-structure, application, manufacturing, simulations, limit states

Literature

[1] HACKET, R. M.: Hyperelasticity Primer, Springer, 2018. Berlin, Germany
[2] KAMINSKI, M. M.: Computational Mechanics of Composite Materials, Springer, Germany, Berlin 2005.

Advised literature

[1] HOLZAPFEL,G.: Nonlinear Solid Mechanics: A Continuum Approach for Engineering, John Wiley & sons ltd, Chichester, England.
[2] JONES,R.: Mechanics Of Composite Materials, CRC Press 2018.