Course detail
Special Technology of Machining
FSI-HO1Acad. year: 2013/2014
The course is focused on the machining technology used with numeric control machine tools. Students will obtain basic knowledge of programming NC-machines, they will familiarise with the use of linear programming in the technology, especially for determining optimum cutting parameters, with solution of dimensional chains in TPV applying methods of mathematical statistics, theory of operating allowances, and with conventional, as well as prospective cutting tools used with NC-machines. Practical exercises are carried out on CNC educational machine tools and PCs, used especially for a simulation of the machining at NC- machines and solving of linear programming tasks.
The subject is directed to the machining technology on CNC machine tools. The students are given the basic knowledge in the programming of NC machine tools such as linear programming in technology, especially for determination of optimum cutting parameters, solution of dimensional chains with the application of mathematical statistics methods. Practical exercises are realised on CNC machine tools and PC especially by simulation
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Planned learning activities and teaching methods
Assesment methods and criteria linked to learning outcomes
Course curriculum
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Aims
Specification of controlled education, way of implementation and compensation for absences
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Prerequisites and corequisites
Basic literature
KOCMAN, K., PROKOP, J. Technologie obrábění. Brno: AKADEMICKÉ NAKLADATELSTVÍ CERM, s.r.o., 2003. 271 s. ISBN 80-214-1996-2. (CS)
KOCMAN, K. Speciální technologie obrábění. 3. ed. Brno: AKADEMICKÉ NAKLADATELSTVÍ CERM, s.r.o., 2004. 227 s. ISBN 80-214-2562-8. (CS)
SHAW, M. C. Metal Cutting Principles. 2nd ed. Oxford University Press, 2005. 651 pp. ISBN 0-19-514206-3. (EN)
Recommended reading
Classification of course in study plans
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Lecture
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Syllabus
2. Surface Integrity in Machining
3. Machining of Difficult-to-Machine Materials, Machining of Progressive Technical Materials
4. Fundamentals of Linear Programming (LP)
5. Applications of LP in Manufacturing Technology – Graphical Solution of LP Tasks
6. Applications of LP in Manufacturing Technology – Numerical Solution of LP Tasks
7. Cutting Conditions for CNC Drilling
8. Cutting Conditions for CNC Turning
9. Automation of a Small Lot Production Process
10. HSC, HFM and HPM Technologies
11. Production and Machining of Parts with Extreme Dimensions (micro, macro)
12. Deep Drilling
13. Additive Technologies, Reverse Engineering