Lecturer(s)
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Odvárka Eduard, Ing.
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Schwarzová Ludmila, Ing. Ph.D.
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Course content
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During the exercises, students will actively simulate examples of a specific technological process according to the content below Exercise content: 1. Introduction to volume forming simulation - operation in the Deform 2D software. 2. Press upsetting simulation without heat transfer. 3. Hammer press upsetting simulation with heat transfer. 4. Extrusion process simulation. 5. Individual solving of selected task in the 3D setting. 6. Introduction to heat treatment simulation - operation in the Deform HT software. 7. Simulation of the hardenability test. 8. Computer modelling of heating a blank in the furnace. 9. Heat treatment simulation with phase transformation, data preparation, structural analyses using software. Introduction to welding simulation. 10. Simulation of welding 11. Simulation of the surface hardening technology 12. Simulartion of the elektric arc welding 13. Consultations for semester works
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Learning activities and teaching methods
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Skills demonstration, Practicum
- Contact hours
- 39 hours per semester
- Graduate study programme term essay (40-50)
- 40 hours per semester
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prerequisite |
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Knowledge |
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to know the technological processes of forming and welding to know the physical laws in the the heat transfer and heat conduction and friction to know the characteristics of the stress state and its quantities to be familiar with engineering materials based on metals, principles and laws of phase transformation and recrystallization |
Skills |
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to work with computer technology on middle to higher level to master the basics of the CAD system to manage reading and comprehension of technical text |
Competences |
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N/A |
learning outcomes |
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Knowledge |
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to find tke context between the theoretical quantities in mechanics, materials and technological process computed values properly interpret to specific technological process |
Skills |
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To create your own digital model of the technological process of forming, heat treatment and welding. |
Competences |
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N/A |
teaching methods |
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Knowledge |
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Practicum |
Lecture with visual aids |
Multimedia supported teaching |
Skills |
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Laboratory work |
Task-based study method |
Multimedia supported teaching |
Competences |
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Laboratory work |
Multimedia supported teaching |
assessment methods |
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Knowledge |
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Skills demonstration during practicum |
Skills |
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Individual presentation at a seminar |
Competences |
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Project |
Recommended literature
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Kraus, Václav. Tepelné zpracování a slinování. Plzeň : Západočeská univerzita, 2000. ISBN 80-7082-582-0.
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Kuncipál, Josef. Teorie svařování. Praha : SNTL, 1986.
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Počta, B. Základy teorie tváření kovů. Praha: SNTL, 1966.
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