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Last update: Novák Pavel prof. Ing. Ph.D. (20.02.2018)
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Last update: Novák Pavel prof. Ing. Ph.D. (20.02.2018)
Students will be able to: Describe the crystal structure of metallic materials including its defects. Describe the mechanisms of metallic materials' deformation. Describe the mechanisms of the fatigue and creep. Describe the processes connected with recovery and recrystallization of metals. |
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Last update: Novák Pavel prof. Ing. Ph.D. (20.02.2018)
R: Gottstein G., Physical Foundations of Material Science, Springer, Berlin, 2004, 3540401393. |
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Last update: Novák Pavel prof. Ing. Ph.D. (20.02.2018)
1. Internal structure of metals and alloys, crystalline, amorphous and quasicrystalline materials. 2. Fundamentals of quantum physics: electron theory of solids. 3. Fundamentals of quantum physics: zone theory, magnetic, electric and cohesion properties. 4. Classification of lattice defects, point defects. 5. Line defects- dislocations: fundamentals, description and classification. 6. Line defects- interaction of dislocations with obstacles. 7. Planar defects- grain boundaries: fundamentals, description and classification. 8. Planar defects- grain boundary segregation and migration. 9. Diffusion in solids. 10. Plastic deformation of metals- fundamentals. 11. Plastic deformation of metals- hardening curves. 12. Fracture. 13. Creep. 14. Recovery and recrystallization. |
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Last update: Novák Pavel prof. Ing. Ph.D. (20.02.2018)
Success in oral exam. |
Teaching methods | ||||
Activity | Credits | Hours | ||
Konzultace s vyučujícími | 0.5 | 14 | ||
Účast na přednáškách | 1.5 | 42 | ||
Příprava na přednášky, semináře, laboratoře, exkurzi nebo praxi | 1.5 | 42 | ||
Příprava na zkoušku a její absolvování | 1.5 | 42 | ||
5 / 5 | 140 / 140 |
Coursework assessment | |
Form | Significance |
Oral examination | 100 |