Course: Engineering Technologies I

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Course title Engineering Technologies I
Course code TUVI/TK3S1
Organizational form of instruction Lecture + Tutorial
Level of course Bachelor
Year of study not specified
Semester Winter
Number of ECTS credits 4
Language of instruction Czech
Status of course Compulsory
Form of instruction Face-to-face
Work placements This is not an internship
Recommended optional programme components None
Lecturer(s)
  • Bílek Ondřej, doc. Ing. Ph.D.
Course content
1. Introduction to engineering technology 2. Foundry technology 3. Precision casting methods 4. Metal forming 5. Bulk forming 6. Sheet metal forming 7. Mechanical cutting of materials by shearing 8. Joining of materials by riveting, soldering and gluing 9. Joining of materials by welding 10. Thermal cutting of materials 11. Machining and technological conditions 12. Conventional machining with defined cutting edge geometry 13. Conventional precision and finishing machining methods 14. Nonconventional machining methods Two excursions to local manufacturing companies are planned for full-time students during the course. These excursions focus on the content of the course and serve to familiarize with the production cycle.

Learning activities and teaching methods
Lecturing, Monologic (Exposition, lecture, briefing), Demonstration, Educational trip
  • Preparation for examination - 120 hours per semester
prerequisite
Knowledge
Knowledge of principles and laws in the field of mathematics, physics, chemistry together with related technical subjects is assumed.
Knowledge of principles and laws in the field of mathematics, physics, chemistry together with related technical subjects is assumed.
learning outcomes
Characterise different manufacturing processes, materials and technological procedures
Characterise different manufacturing processes, materials and technological procedures
Apply metal casting processes and the production of castings by different casting methods and the materials used in these processes
Apply metal casting processes and the production of castings by different casting methods and the materials used in these processes
Define the physical and metallurgical basis and principles of metal forming
Define the physical and metallurgical basis and principles of metal forming
Determine appropriate techniques for joining materials by welding, soldering, riveting and bonding
Determine appropriate techniques for joining materials by welding, soldering, riveting and bonding
Select appropriate methods for machining materials using conventional and unconventional technique
Select appropriate methods for machining materials using conventional and unconventional technique
Skills
Design a metal casting process and create metal castings
Design a metal casting process and create metal castings
Set up the die forging process according to standards with calculation verification
Set up the die forging process according to standards with calculation verification
Select the optimum parameter settings for mass production using mechanical shearing
Select the optimum parameter settings for mass production using mechanical shearing
Design a technological process for the production of a component according to a technical drawing
Design a technological process for the production of a component according to a technical drawing
Measure the tooling angles of the cutting tool
Measure the tooling angles of the cutting tool
teaching methods
Knowledge
Lecturing
Educational trip
Educational trip
Monologic (Exposition, lecture, briefing)
Monologic (Exposition, lecture, briefing)
Lecturing
Skills
Demonstration
Demonstration
Practice exercises
Practice exercises
Individual work of students
Individual work of students
assessment methods
Knowledge
Analysis of the student's performance
Analysis of the student's performance
Analysis of works made by the student (Technical products)
Composite examination (Written part + oral part)
Composite examination (Written part + oral part)
Analysis of works made by the student (Technical products)
Recommended literature
  • Bílek, O., Lukovics, I. Výrobní inženýrství a technologie. Zlín: UTB, 2014. ISBN 978-80-7454-471-2.
  • Kocman, K. Technologické procesy obrábění. Brno, 2011. ISBN 978-80-7204-722-2.
  • LEINVEBER, J., VÁVRA, P. Strojnické tabulky: pomocná učebnice pro školy technického zaměření. 5. upr. vyd.. Úvaly: Albra, 2011. ISBN 978-80-7361-081-4.
  • Lukovics, Imrich. Konstrukční materiály a technologie. 1. vyd. Brno : VUT, 1992. ISBN 8021403993.


Study plans that include the course
Faculty Study plan (Version) Category of Branch/Specialization Recommended year of study Recommended semester