Academic year 2025/2026 |
Supervisor: | Ing. Tomáš Koutecký, Ph.D. | |||
Supervising institute: | ÚK | |||
Teaching language: | Czech | |||
Aims of the course unit: | ||||
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Learning outcomes and competences: | ||||
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Prerequisites: | ||||
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Course contents: | ||||
The course provides both theoretical and practical insights into the entire process from idea to prototype. Students will explore the design and development process, engineering thinking, and digital prototyping, with a strong emphasis on hands-on activities such as CAD modeling, additive manufacturing, and the complete development and testing of a competitive functional device. Students will have access to the resources and equipment of the strojLAB design workshop. The course integrates knowledge acquired in theoretical subjects of the bachelor's program in mechanical engineering, particularly in design, calculations, and the development of machine parts and mechanisms, while expanding it with practical implementation using digital manufacturing technologies. |
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Teaching methods and criteria: | ||||
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Assesment methods and criteria linked to learning outcomes: | ||||
Conditions for Obtaining a Graded Credit:
The final grade will be determined based on the ECTS scale. Lectures: Attendance is voluntary. Exercises and Labs: Attendance is mandatory and monitored by the instructor. A maximum of two absences is allowed. In the case of prolonged absence, making up for missed classes is at the discretion of the course coordinator. For participation in exercises, each student must have their own laptop. |
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Controlled participation in lessons: | ||||
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Type of course unit: | ||||
Lecture | 13 × 2 hrs. | optionally | ||
Laboratory exercise | 6 × 2 hrs. | compulsory | ||
Computer-assisted exercise | 7 × 2 hrs. | compulsory | ||
Course curriculum: | ||||
Lecture | 1. Introduction – The design process; an overview of additive technologies. |
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Laboratory exercise | 1. 3D Printing – Introduction and Training |
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Computer-assisted exercise | 1. Introduction to the Course, Project Assignment; SolidWorks – Sketching, Part Modeling |
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Literature - fundamental: | ||||
1. NORTON, Robert L. Design of machinery: An introduction to the synthesis and analysis of mechanisms and machines. 5th ed. New York: McGraw-Hill, 2011. ISBN 00-774-2171-X. | ||||
2. Ulicker, J. J., Pennock, R., Shigley, J. E.: Theory of machines and mechanisms. Oxford University Press, 5rd edition, 2017, ISBN-13: 978-0190264505 | ||||
3. FRANCE, Anna Kaziunas. Make: 3D printing. Sebastopol: Maker Media, 2013, xv, 213 stran : ilustrace (převážně barevné). ISBN 978-1-4571-8293-8. | ||||
4. GEBHARDT, Andreas, Julia KESSLER a Laura THURN. 3D printing: understanding additive manufacturing. 2nd edition. Munich: Cincinnati: Hanser Publishers ; Hanser Publications, 2019, xvi, 204 stran : ilustrace ; 24 cm. ISBN 978-1-56990-702-3. | ||||
Literature - recommended: | ||||
3. WILSON, Charles E. a Peter J. SADLER. Kinematics and dynamics of machinery. 3rd ed. Upper Saddle River: Pearson Education International Inc., 2003. ISBN 02-013-5099-8. | ||||
4. FRANCE, A. K. Make: 3D Printing: The Essential Guide to 3D Printers. 1st ed. Maker Media, Inc., December 13, 2013. ISBN 978-1457182938 |
The study programmes with the given course: | |||||||||
Programme | Study form | Branch | Spec. | Final classification | Course-unit credits | Obligation | Level | Year | Semester |
B-KSI-P | full-time study | --- no specialisation | -- | GCr | 4 | Compulsory | 1 | 2 | S |
B-ZSI-P | full-time study | STI Fundamentals of Mechanical Engineering | -- | GCr | 4 | Compulsory-optional | 1 | 3 | S |
Faculty of Mechanical Engineering
Brno University of Technology
Technická 2896/2
616 69 Brno
Czech Republic
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