Academic year 2022/2023 |
Supervisor: | doc. Ing. Josef Sedlák, Ph.D. | |||
Supervising institute: | ÚST | |||
Teaching language: | Czech | |||
Aims of the course unit: | ||||
The aim of the course is to familiarise students with automation of a short-run and single-part production focusing on an application of numeric cntrol machine tools including technical production planning. |
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Learning outcomes and competences: | ||||
The students will obtain theoretical fundamentals of a machining technology with the use of numeric control machine tools, they will learn basic methods of programming of these tools, and will be acquainted with economic aspects of technological disciplines. |
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Prerequisites: | ||||
The fundamentals of the metal cutting theory, probability theory, differential and integral calculus, determinants, dynamic of the mass point, mechanical work and energy, molecular physics and thermodynamics |
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Course contents: | ||||
The content of the course is mainly focused on automation and optimization of technological processes and applies knowledge from the scientific disciplines of physics and mathematics in the implementation, improvement and use of production processes. Introduces students to the theory of production processes, the theory of dimensional circuits with a focus on assembly of machinery, the application of linear algebra to optimize production processes, the analysis of statistical phenomena and probabilities in cutting theory, basic knowledge in creating programs for CNC machines and applications CAD/CAM in TPV, with environmental aspects of engineering production, cutting materials, HSC machining and the theory of energy cutting problems. Furthermore, the content of the course is focused on the methods of industrial engineering in the field of theory and analysis of operations as a necessary prerequisite for mastering technical and economic problems of all types of production. |
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Teaching methods and criteria: | ||||
The course is taught through lectures explaining the basic principles and theory of the discipline. Teaching is suplemented by practical laboratory work. |
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Assesment methods and criteria linked to learning outcomes: | ||||
Credit requirements include an active participation in all exercises, completing all tasks in the laboratory exercises, and delivery of all required written work. In well-founded cases the teacher can set further conditions as a compensation. The examination tests the knowledge and, in particular, the ability to apply the knowledge independently in solving assigned tasks. The examination consists of a written (test or written exam) and oral part. If the student fails to apply the knowledge in practice, the examination will be graded as unsatisfactory. |
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Controlled participation in lessons: | ||||
Students work is systematically controlled in a form of short written tests, individual compensatory assignments and result check. |
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Type of course unit: | ||||
Guided consultation in combined form of studies | 1 × 13 hrs. | compulsory | ||
Guided consultation | 1 × 52 hrs. | optionally | ||
Laboratory exercise | 1 × 13 hrs. | compulsory | ||
Course curriculum: | ||||
Guided consultation in combined form of studies | High-precision machining, calculation or dimension inspection. |
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Guided consultation | High-precision machining, calculation or dimension inspection. |
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Laboratory exercise | Dimensional chains in production - Calculation for complete interchangeability. |
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Literature - fundamental: | ||||
1. KOCMAN, K. Speciální technologie obrábění. 3. ed. Brno: AKADEMICKÉ NAKLADATELSTVÍ CERM, s.r.o., 2004. 227 s. ISBN 80-214-2562-8. | ||||
2. PÍŠKA, M. a kolektiv. Speciální technologie obrábění. 1. vyd. Brno: AKADEMICKÉ NAKLADATELSTVÍ CERM, s.r.o., 2009. 246 s. ISBN 978-80-214-4025-8. | ||||
3. KOCMAN, K. a kolektiv. Aktuální příručka pro technický úsek. 15. ed. Edit. S. Hanzlík, Praha, Verlag Dashöfer, 2000 3950 s. ISBN 80-902247-2-5. | ||||
4. KOCMAN, K., PROKOP, J. Technologie obrábění. 2. vyd. Brno: Akademické nakladatelství CERM, s.r.o., 2005. 270 s. ISBN 80-214-3068-0. | ||||
5. SHAW, M. C. Metal Cutting Principles. 2nd ed. Oxford University Press, 2005. 651 pp. ISBN 0-19-514206-3. | ||||
6. AB SANDVIK COROMANT – SANDVIK CZ, s.r.o. Příručka obrábění-kniha pro praktiky. Přel. KUDELA, M. Praha: Scientia, s.r.o., 1997. 857 s. Přel. z: Modern Metal Cutting – A Practical Handbook. ISBN 91-97 22 99-4-6. | ||||
7. CHUA, C. K., LEONG, K. F., LIM, C. S. Rapid Prototyping: Principles and Applications. 3rd ed. New Jersey: World Scientific, c2010, 512 pp. ISBN 978-981-277-897-0. | ||||
8. RAJA, V., FERNANDES, K. J. Reverse Engineering: An Industrial Perspective. Series: Springer Series in Advanced Manufacturing. 2008, XVIII, 242 pp. 135 illus. ISBN 978-1-84628-856-2. | ||||
Literature - recommended: | ||||
1. PÍŠKA, M. a kolektiv. Speciální technologie obrábění. 1. vyd. Brno: AKADEMICKÉ NAKLADATELSTVÍ CERM, s.r.o., 2009. 246 s. ISBN 978-80-214-4025-8. | ||||
2. KOCMAN, K. Speciální technologie obrábění. 3. ed. Brno: AKADEMICKÉ NAKLADATELSTVÍ CERM, s.r.o., 2004. 227 s. ISBN 80-214-2562-8. | ||||
3. KOCMAN, K. a kolektiv. Aktuální příručka pro technický úsek. 15. ed. Edit. S. Hanzlík, Praha, Verlag Dashöfer, 2000 3950 s. ISBN 80-902247-2-5. | ||||
4. KOCMAN, K., PROKOP, J. Technologie obrábění. 2. vyd. Brno: Akademické nakladatelství CERM, s.r.o., 2005. 270 s. ISBN 80-214-3068-0. | ||||
5. SHAW, M. C. Metal Cutting Principles. 2nd ed. Oxford University Press, 2005. 651 pp. ISBN 0-19-514206-3. | ||||
6. AB SANDVIK COROMANT – SANDVIK CZ, s.r.o. Příručka obrábění-kniha pro praktiky. Přel. KUDELA, M. Praha: Scientia, s.r.o., 1997. 857 s. Přel. z: Modern Metal Cutting – A Practical Handbook. ISBN 91-97 22 99-4-6. | ||||
7. CHUA, C. K., LEONG, K. F., LIM, C. S. Rapid Prototyping: Principles and Applications. 3rd ed. New Jersey: World Scientific, c2010, 512 pp. ISBN 978-981-277-897-0. | ||||
8. RAJA, V., FERNANDES, K. J. Reverse Engineering: An Industrial Perspective. Series: Springer Series in Advanced Manufacturing. 2008, XVIII, 242 pp. 135 illus. ISBN 978-1-84628-856-2. |
The study programmes with the given course: | |||||||||
Programme | Study form | Branch | Spec. | Final classification | Course-unit credits | Obligation | Level | Year | Semester |
N-STG-K | combined study | STM Manufacturing Technology and Management in Industry | -- | Cr,Ex | 6 | Compulsory | 2 | 2 | W |
N-STG-K | combined study | MTS Modern Technologies of Lighting Systems | -- | Cr,Ex | 6 | Compulsory | 2 | 2 | W |
N-STG-K | combined study | STG Manufacturing Technology | -- | Cr,Ex | 6 | Compulsory | 2 | 2 | W |
Faculty of Mechanical Engineering
Brno University of Technology
Technická 2896/2
616 69 Brno
Czech Republic
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